RESEARCH METHODOLOGY OF THE ELEMENTARY BASE OF WEAPONS FRAGMENTS OF THE RF ACCORDING TO THE AIR FORCE NOMENCLATURE

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Abstract

Article provides the essence, main stages, features and examples of the application of the methodology of the research of the elemental base of russian federation weapon fragments according to the nomenclature of the Air Force. A chronology was provided and research results were summarized, the main countries and companies producing this elemental base, its purpose and main characteristics were established. The main categories of the elemental base from the composition of russian federation weapon fragments according to the nomenclature of the Air Force have been established. The results of research presented in the article were conducted by the team of the Central Research Institute of Armaments and Military Equipment of Armed Forces of Ukraine during February −June 2022.

Based on the results of the research, decimal numbers were determined for almost the entire elemental database of fragments of the investigated samples of weapons of the russian federation according to the nomenclature of the Air Force, which made it possible to determine their manufacturers, carry out identification, and establish their technical characteristics. It is shown that the presence of decimal numbers of the elemental base allows determining cooperation schemes during its production and finding analogs (for distribution of sanction lists).

It has been established that the following 8 countries are the suppliers of the element base for the researched weapons of the russian federation: the USA, Japan, Taiwan, China, Great Britain, Switzerland, the Netherlands and Germany. Moreover, among 51 companies, the first place in terms of the number of element bases (76 %) in russian weapons is occupied by the USA (33 companies). In second place is Switzerland, with only 3 companies owning 8.5 % of the elemental base in the composition of weapons and military equipment of the russian federation. The third place is shared by China and Taiwan with 3.4 % each.

Companies such as XILINX (USA), Intel Corporation (USA), Texas Instruments (USA) and Analog Devices Inc. (USA) are such that the element base of which is used in four or more samples of weapons and military equipment of the russian federation, the fragments of which were studied.

Ways of using the obtained results are proposed, the topology of the elemental base of the foreign production of the researched fragments of weapons and military equipment of the russian federation according to the nomenclature of the Air Force are given.

Author Biographies
  1. Ruslan Zhivotovsky , Central Scientific Research Institute of Armament and Military Equipment of the Armed Forces of Ukraine

    Candidate of Technical Sciences

  2. Oleh Shincaruk , Central Scientific Research Institute of Armament and Military Equipment of the Armed Forces of Ukraine

    Doctor of Technical Sciences, Professor

  3. Maksym Yakovlev , Central Scientific Research Institute of Armament and Military Equipment of the Armed Forces of Ukraine

    Doctor of Technical Sciences, Professor

  4. Oleg Dokuchaiev , Department of Security Service of Ukraine in Luhansk and Donetsk regions

    Candidate of Technical Sciences

References

Животовський Р.М., Шинкарук О.М., Яковлев М.Ю., Варсєгов А.С. Аналіз крилатих ракет повітряного базування рф у війні проти України 2022 року. Системи озброєння та військової техніки. 2022. №1. С. 83−92. https://doi.org/1034169/2414-0651.2022.1(33).83−92.

Калугін Д.С., Півнєв Д.А. Вибір показника ефективності боротьби з високоточною зброєю ЗРК, що є на озброєнні. Наука і техніка Повітряних Сил Збройних Сил України. 2010. Вип. 2(4). С. 88−90.

Що робити з трофеями, які здобувають українські захисники на полі бою. [Електронний ресурс]. − Режим доступу: https://savelife.in.ua/materials/analytics/shcho-robyty-z-trofeyamy-yaki-zdobuvayut/.

Яку російську техніку захопила українська армія у росіян. [Електронний ресурс]. − Режим доступу: https://www.bbc.com/ukrainian/news-60639339.

ЗСУ захопили вже більше тисячі одиниць техніки рф – дослідники. [Електронний ресурс]. − Режим доступу: https://1zahid.com/news/zsu-zahopyly-vzhe-bilshe-tysyachi-odynyts-tehniky-rf-doslidnyky/.

Українські захисники захопили російську техніку з Північної Осетії. [Електронний ресурс]. − Режим доступу: https://1zahid.com/news/ukrayinski-zahysnyky-zahopyly-rosijsku-tehinku-z-pivnichnoyi-osetiyi/.

Оружие войны в Украине. Результаты трехлетнего расследования поставок оружия в Донецкую и Луганскую области. Conflict Armament Research Ltd. London. 2021. 234 c.

Frontline perspective. Islamic state's weaponised drones. Conflict Armament Research Ltd. London. 2016. 3 р.

Dispatch from the field. Evolution of UAVs employed by houthi forces in Yemen. Conflict Armament Research Ltd. London. 2020. 36 р.

Warsaw pact-calibre ammunition quantity tables. Field guide № 1. Conflict Armament Research Ltd. London. 2014. 2 р.

Russian manpads technology. Field guide № 2. Conflict Armament Research Ltd. London. 2014. 2 р.

Warsaw pact-calibre ammunition box marking. Field guide № 3. Conflict Armament Research Ltd. London. 2014. 8 р.

Identifying marks on Kalashnikov-pattern weapon. Field guide № 4. Conflict Armament Research Ltd. London. 2014. 6 р.

Глобальне дослідження незаконного обігу вогнепальної зброї. Вступ, короткий виклад інформації, висновки та політичний підтекст і регіональний огляд. Організація об’єднаних націй. Нью Йорк. 2020. 44 с.

Шишацький А.В., Рансевич Р.І., Шкнай О.В., Житніков Б.В., Крижановський А.О. Аналіз основних варіантів комплектації безпілотного літального апарату оперативно-тактичного рівня «Орлан-10». The ХХVI Intern. Scient. and Pract. Conf. «Problems of science and practice, tasks and ways to solve them». July 05 – 08. 2022. Helsinki. Finland. Рp. 429—437.

Gibson I., Rosen D., Stucker B. Additive Manufacturing Technologies. Springer New York. 2015. 498 p. DOI: https://doi.org/10.1007/978-1-4939-2113-3

Реверс-инжиниринг: как 3D-сканирование и моделирование помогает украинской промышленности [Электронный ресурс]. − Режим доступа: https://ain.ua/2020/02/21/revers-inzhiniring/.

Что такое обратный инжиниринг [Электронный ресурс]. − Режим доступа: https://multiphysics.ru/stati/blog/chto-takoe-obratnyi-inzhiniring.htm.

Werghi, N., Fisher, R., Robertson, C. & Ashbrook, A. (1999). Object reconstruction by incorporating geometric constraints in reverse engineering, CAD Computer Aided Design. № 31. Рp. 363—399. https://doi.org/10.1016/S0010- 4485(99)00038-X. DOI: https://doi.org/10.1016/S0010-4485(99)00038-X

Son, H., Kim, C. & Kim, C. (2015). 3D reconstruction of asbuilt industrial instrumentation models from laser-scan data and a 3D CAD database based on prior knowledge. Automation in Construction. № 49. Рp. 193—200. https:// doi.org/10.1016/j.autcon.2014.08.007. DOI: https://doi.org/10.1016/j.autcon.2014.08.007

Ali, S., Durupt, A., Adragna, P.-A. & Bosch-Mauchand, M. (2014). A Reverse Engineering for Manufacturing approach. Computer-Aided Design and Applications. № 11. Р. 694—703. https://doi.org/10.1080/16864360.2014.914387. DOI: https://doi.org/10.1080/16864360.2014.914387

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Published
2022-09-30
Section
MISSILES COMPLEXES
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Copyright (c) 2022 Руслан Животовський,Олег Шинкарук ,Максим Яковлев ,Андрій Варсєгов ,Олег Докучаєв

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How to Cite

RESEARCH METHODOLOGY OF THE ELEMENTARY BASE OF WEAPONS FRAGMENTS OF THE RF ACCORDING TO THE AIR FORCE NOMENCLATURE. (2022). Weapons and Military Equipment, 35(3), 55-67. https://doi.org/10.34169/2414-0651.2022.3(35).55-67

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