INTEGRATION OF NEW MATERIALS AND DESIGN SOLUTIONS IN RECONNAISSANCE AIRCRAFT

Authors

  • Nurtas Kabakov Military Engineering Institute of Radio Electronics and Communications
  • Nurzhan Zikiryaev Military Engineering Institute of Radio Electronics and Communications
  • Komekbai Koichikulov Military Institute of Land Forces named after S. Nurmagambetov

DOI:

https://doi.org/10.56132/2791-3368-2025-4-64-8-15

Keywords:

aviation, composite materials, materials science, nanomaterials, polymers, strength of materials

Abstract

This article explores the theoretical and applied aspects of the use of alloys and composites in aviation. Discusses theoretical and applied aspects of modern materials science in aviation. In the context of the continuous pursuit of improving aircraft performance and safety, materials science plays a key role in the development and application of innovative materials for aircraft construction and components. In the modern aviation industry, which is constantly facing demands to increase productivity and reduce aircraft weight, the choice and optimization of materials play a crucial role. The study was conducted within the framework of program-specific financing of the IRN No.BR249005/0224 "Development of innovative designs for the manufacture and improvement of unmanned special-purpose aircraft systems based on the technological infrastructure of a higher military educational institution" (Funding source: Science Committee of the Ministry of Science and Higher Education of the Republic of Kazakhstan).

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Author Biographies

  • Nurtas Kabakov, Military Engineering Institute of Radio Electronics and Communications

    Major General, Head of the Institute, Almaty, Kazakhstan

  • Nurzhan Zikiryaev, Military Engineering Institute of Radio Electronics and Communications

    PhD, Lieutenant Colonel, Deputy Head of the Department of Fundamentals of Military Radio Engineering and Electronics, Almaty, Kazakhstan, nuzhan.zikiryaev@bk.ru

  • Komekbai Koichikulov, Military Institute of Land Forces named after S. Nurmagambetov

    сolonel, аssociate рrofessor, Almaty, Kazakhstan, koichykulov@bk.ru

References

1. ЦепляеваТ. П., МигуновА. Ю. Analysis of the current state of development of high-altitude unmanned aerial vehicles // Open Information and Computer Integrated Technologies. – 2019. – №. 83. – С. 28-41. URL: http://nti.khai.edu/ojs/index.php/oikit/article/view/686 (дата обращения: 04.07.2025).

2. Цепляева Т. П., Мигунов А. Ю. Анализ современного состояния развития высотных беспилотных летательных аппаратов. – 2019. URL: http://dspace.library.khai.edu/xmlui/handle/123456789/5601 (дата обращения: 04.07.2025).

3. Каримов А. Х. Особенности проектирования беспилотных авиационных систем нового поколения // Труды МАИ. 2011. №47. URL: https://cyberleninka.ru/article/n/osobennosti-proektirovaniya-bespilotnyhaviatsionnyh-sistem-novogo-pokoleniya (дата обращения: 04.07.2025).

4. Колесов. Н.С – Материаловедение и технология конструкционных материалов: Пер. с японск. – М.: Мир, 1982. – С. 232, ил.

5. Бабичев А. П Справочник инженера-технолога в машиностроении, [текст] / Рысева Т. Н., Чукарина И. М, Мотренко П. Д. - М.: Машиностроение, 1990. – С. 382.

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Published

2026-03-30

How to Cite

INTEGRATION OF NEW MATERIALS AND DESIGN SOLUTIONS IN RECONNAISSANCE AIRCRAFT. (2026). Bulletin of the Military Institute Named After S. Nurmagambetov, 4(64), 8-15. https://doi.org/10.56132/2791-3368-2025-4-64-8-15

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