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Systems for automatic control of the characteristics of compounds based on composite materials

НазваSystems for automatic control of the characteristics of compounds based on composite materials
Назва англійськоюSystems for automatic control of the characteristics of compounds based on composite materials
АвториAndriy Remez
ПринадлежністьTernopil Ivan Puluj National Technical University, Ternopil, Ukraine
Бібліографічний описSystems for automatic control of the characteristics of compounds based on composite materials / Andriy Remez // Scientific Journal of TNTU. — Tern.: TNTU, 2025. — Vol 117. — No 1. — P. 76–86.
Bibliographic description:Remez A. (2025) Systems for automatic control of the characteristics of compounds based on composite materials. Scientific Journal of TNTU (Tern.), vol 117, no 1, pp. 76–86.
DOI: https://doi.org/10.33108/visnyk_tntu2025.01.076
УДК

621.326

Ключові слова

composite material, electric arc spraying, reinforced composite material, mirror, offset antenna.

The paper deals with the study and analysis of the antenna array shell formed by the method of electric arc spraying and coating with a composite material. An assessment of the stiffness and strength properties of antennas made in both solid and reinforced structures is presented graphically. The calculation of their stress-strain state under the influence of wind load and gravity is carried out. The inhomogeneities in the composite materials of the shell structures were determined using the conductometric method, and calculations were performed, including the calculation of the resistivity of the composite material and visualization of the results.

ISSN:2522-4433
Перелік літератури
1. Sytar V. I., Burmistr M. V., Kabat O. S. (2012). Industrial ecology in the production and processing of polymeric materials. Dnipro: SHEI USUCT, p. 117.
2. Edited by G. S. Katz and D. V. Milevsky (1981). Fillers for polymer composite materials (reference manual).Moscow: Khimiya.
3. Radovenchyk V. M., Gomel M. D. (2010). Solid waste: collection, processing, storage: a textbook. K.: Kondor Publishing House, 552 p.
4. Piringer Otto G., Baner Albert Lawrence (2008). Plastic packaging: interactions with food and pharmaceuticals (2nd ed.). Wiley-VCH, p. 632. ISBN 978-3-527-31455-3.
5. Nikolayenko B. A., Peleshok S. B. (2022). Modern satellite communication systems: a textbook. K.: ICZZI of Igor Sikorsky Kyiv Polytechnic Institute, p. 146.
6. Sribna I. M., S. I. Makhonin, Blasenko G. M., Kirpach L. A. (2019). Cyclic communication and navigation systems. Study guide. K.: DUT, p. 123.
7. Andreev M. V., Drobakhin O. O., Magro V. I., Morozov V. M., Saltykov D. Y. ANTENNAS OF ELECTRONIC VLF.
8. Antennas and microwave devices: Study guide for course design. 4 parts - Kh.
9. Markovich S. I. (2007) Study of the relationship between wear resistance and physical and mechanical properties of coatings applied by electric arc spraying of dissimilar wires. Problems of friction and wear, no. 46, pp. 16–18.
10. Yavorska M. I., Dubyniak T. S., Manziy O. S., Andreichuk S. K. (2022). Doslidzhennia protsesu ta zadachi, shcho vynykaiut pry utvorenni obolonok metodom elektroduhovoho napylennia [Study of the process and problems arising during the formation of shells by the method of electric arc spraying]. MMMTES (Tern., November 22–23, 2022), pp. 85–87. (In Ukrainian).
11. Dubynyak T., Dzhydzhora R., Manziy O., Andreichuk S. The process of shells formation by electric arc spraying method and optimization by the criterion of their geometric shape accuracy. Scientific Journal of TNTU, vol. 104, no. 4, pp. 24–32.
12. “Antenna and Wave Propagation” by John D. Kraus and Ronald J. Marhefka (2017, McGraw Hill).
13. Reddy J. N. (2014). Introduction to the Finite Element Method. McGraw-Hill.
14. Zhang X., & Ainsworth M. (2010). The Finite Element Method in Electromagnetics. Wiley.
References:
1. Sytar V. I., Burmistr M. V., Kabat O. S. (2012). Industrial ecology in the production and processing of polymeric materials. Dnipro: SHEI USUCT, p. 117.
2. Edited by G. S. Katz and D. V. Milevsky (1981). Fillers for polymer composite materials (reference manual).Moscow: Khimiya.
3. Radovenchyk V. M., Gomel M. D. (2010). Solid waste: collection, processing, storage: a textbook. K.: Kondor Publishing House, 552 p.
4. Piringer Otto G., Baner Albert Lawrence (2008). Plastic packaging: interactions with food and pharmaceuticals (2nd ed.). Wiley-VCH, p. 632. ISBN 978-3-527-31455-3.
5. Nikolayenko B. A., Peleshok S. B. (2022). Modern satellite communication systems: a textbook. K.: ICZZI of Igor Sikorsky Kyiv Polytechnic Institute, p. 146.
6. Sribna I. M., S. I. Makhonin, Blasenko G. M., Kirpach L. A. (2019). Cyclic communication and navigation systems. Study guide. K.: DUT, p. 123.
7. Andreev M. V., Drobakhin O. O., Magro V. I., Morozov V. M., Saltykov D. Y. ANTENNAS OF ELECTRONIC VLF.
8. Antennas and microwave devices: Study guide for course design. 4 parts - Kh.
9. Markovich S. I. (2007) Study of the relationship between wear resistance and physical and mechanical properties of coatings applied by electric arc spraying of dissimilar wires. Problems of friction and wear, no. 46, pp. 16–18.
10. Yavorska M. I., Dubyniak T. S., Manziy O. S., Andreichuk S. K. (2022). Doslidzhennia protsesu ta zadachi, shcho vynykaiut pry utvorenni obolonok metodom elektroduhovoho napylennia [Study of the process and problems arising during the formation of shells by the method of electric arc spraying]. MMMTES (Tern., November 22–23, 2022), pp. 85–87. (In Ukrainian).
11. Dubynyak T., Dzhydzhora R., Manziy O., Andreichuk S. The process of shells formation by electric arc spraying method and optimization by the criterion of their geometric shape accuracy. Scientific Journal of TNTU, vol. 104, no. 4, pp. 24–32.
12. “Antenna and Wave Propagation” by John D. Kraus and Ronald J. Marhefka (2017, McGraw Hill).
13. Reddy J. N. (2014). Introduction to the Finite Element Method. McGraw-Hill.
14. Zhang X., & Ainsworth M. (2010). The Finite Element Method in Electromagnetics. Wiley.
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