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Experimental and theoretical research of the interaction between high-strength supercavitation impactors and monolithic barriers in water A. N. Ishchenko, S. A. Afanas'eva, V. V. Burkin [et al.]

Contributor(s): Afanaseva, Svetlana A | Burkin, Viktor V | Diachkovskii, Alexei S | Zykova, Angelica I | Khabibullin, Marat V | Chupashev, Andrey V | Yugov, Nikolai T | Ishchenko, Aleksandr NMaterial type: ArticleArticleSubject(s): суперкавитирующие ударники | математическое моделирование | алюминиевые сплавыGenre/Form: статьи в журналах Online resources: Click here to access online In: Journal of Physics: Conference Series Vol. 899. P. 042011 (1-6)Abstract: The article describes experimental and theoretical research of the interaction between supercavitating impactors and underwater aluminum alloy and steel barriers. Strong alloys are used for making impactors. An experimental research technique based on a high-velocity hydro-ballistic complex was developed. Mathematical simulation of the collision the impactor and barrier is based on the continuum mechanics inclusive of the deformation and destruction of interacting bodies. Calculated and experimental data on the ultimate penetration thickness of barriers made of aluminum alloy D16T and steel for the developed supercavitating impactor are obtained.
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The article describes experimental and theoretical research of the interaction between supercavitating impactors and underwater aluminum alloy and steel barriers. Strong alloys are used for making impactors. An experimental research technique based on a high-velocity hydro-ballistic complex was developed. Mathematical simulation of the collision the impactor and barrier is based on the continuum mechanics inclusive of the deformation and destruction of interacting bodies. Calculated and experimental data on the ultimate penetration thickness of barriers made of aluminum alloy D16T and steel for the developed supercavitating impactor are obtained.

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