К вопросу экспериментального изучения раскрытия диафрагм в газодинамической установке КУТ-14



On the issue of experimental study of the opening of diaphragms in the gas-dynamic system CST-14

The results of a study of the possibility of shatter-free opening of diaphragms with notches of various depths made of 0.5 mm thick AMg6M sheet are presented. The study showed that there is a relationship between the notch depth and the diaphragm actuation pressure.

shock tube, diaphragms, notches, shatterproof opening, shock wave


Том 27, выпуск 1, 2026 год



Представлены результаты исследования возможности безосколочного раскрытия диафрагм с насечками различной глубины, выполненных из листа АМг6М толщиной 0,5 мм. Исследование показало, что существует зависимость между глубиной насечки и давлением срабатывания диафрагмы.

ударная труба, диафрагмы, насечки, безосколочное раскрытие, ударная волна


Том 27, выпуск 1, 2026 год



1. Vasilieva S. N., Guk I.V. Voprosy oboronnoj tekhniki. Seriya 16: Tekhnicheskie sredstva protivodejstviya terrorizmu. 2024, No 11-12(197-198), PP. 71-82, DOI 10.53816/23061456_2024_11-12_71.
2. Silnikov N.M., Vasilieva S.N., Guk I.V., Medvedev S.P., Khomik, S.V. Experimental and numerical study of perforated plates effectiveness to ensure safety in case of emergencies on spacecraft and launch pads//Acta Astronautica, 2023, Vol. 204, P. 854-862, DOI 10.1016/j.actaastro.2022.09.038.
3. Silnikov M.V., Medvedev S.P., Anderzhanov E.K., Guk I.V., Ivantsov A.N., Mikhailin A.I., Pomazov V.S., Teresa A.M., Khomik S.V. Himicheskaya fizika. 2022, Vol. 41, No. 12, pp. 56-59, DOI 10.31857/S0207401X2212007X.
4. Medvedev S.P., Anderzhanov E.K., Ivantsov A.N., Kovaleva K.I., Teresa A.M., Khomik S.V. Lazernye, plazmennye issledovaniya i tekhnologii. LAPLAZ-2021: sbornik nauchnykh trudov VII mezhdunarodnoj konferencii. Tom Chast' 1. Moscow: National Research Nuclear University "MEPhI". 2021, pp. 420-421.
5. Vasilieva S. N., Guk I.V. Lazernye, plazmennye issledovaniya i tekhnologii. LAPLAZ-2021: sbornik nauchnykh trudov VII mezhdunarodnoj konferencii. Tom Chast' 1. Saint Petersburg: Lyubavich Printing House. 2023, pp. 161-165.
6. Vasilieva S. N., Guk I.V. Voprosy oboronnoj tekhniki. Seriya 16: Tekhnicheskie sredstva protivodejstviya terrorizmu. 2023, No. 9-10(183-184), pp. 140-147, DOI 10.53816/23061456_2023_9-10_140.
7. Geiko I.V. Voprosy oboronnoj tekhniki. Seriya 16: Tekhnicheskie sredstva protivodejstviya terrorizmu. (Calculation of safety and protective devices. Methodological recommendations for practical exercises.) Nizhny Novgorod: FSBEI NSTU. 2015, 31 p.
8. The official website of the Laboratory of Membrane Safety Devices. URL: https://www.labmpu.ru/membrany (date of request: 02/25/2025).
9. Lee D. W. et al. Effect of rupture disc curvature on the compression waves in S/R valve //Journal of mechanical science and technology. 2008, Т. 22, pp. 755-760.
10. Gopinath K., Narayanamurthy V., Rao Y. V. D. Failure Behavior of a Thin Domed Steel Disc with and without Scores Under a Pressure Impulse//Advances in Industrial Machines and Mechanisms: Select Proceedings of IPROMM 2020. 2021, pp. 385-391.
11. Volkov V. A., Parmon V. A., Tkachenko B. K. Prikladnaya mekhanika i tekhnicheskaya fizika. 1977, No. 4, pp. 92.
12. Kaneko W., Ishii K. Effects of diaphragm rupturing conditions on self-ignition of high-pressure hydrogen//International Journal of Hydrogen Energy. 2016, Vol. 41, No. 25, pp. 10969-10975.
13. Qiu W. et al. Investigation of dual ignition for a detonation-driven shock tunnel in forward driving mode //Chinese Journal of Aeronautics. 2020, vol. 33, No. 5, pp. 1468-1475.
14. Guk I. V., Pomazov V.S. Aktual'nye problemy zashchity i bezopasnosti : Trudy XXIII Vserossijskoj nauchno-prakticheskoj konferencii Rossijskoj akademii raketnykh i artillerijskikh nauk (RARAN). Tom 2. Moscow: Federal State Budgetary Institution "Russian Academy of Rocket and Artillery Sciences". 2020, pp. 65-69.