PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Studies on possibilities of increasing the impact resistance of KTO Rosomak

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Military vehicles are mostly designed in order to provide effective execution of tasks in regions of expected actions and operation conditions. During execution of projects, resulting from participation in peace making and stabilization missions, military vehicles are subject to the impact of various mines and improvised explosives. In many cases, the explosive material mass included in the explosive charges affecting the vehicles significantly exceeds the values specified in standards defining the required protection levels assumed at the design stage. The above determines the search for additional shields or energy-absorbing elements reducing the effects of such influence. Information concerning design solutions is usually classified or very limited. Majority of companies dealing with that issue provides information concerning the scope of their business, highlighting the military area thus high efficiency of their protective solutions, possibly presenting a general outline of a particular solution. This paper presents selected results of analyses and studies being carried out and obtained results of solutions to problems included in the study tasks covering a considered subject. Proposed solutions of protective shields against mines and IED for the KTO Rosomak are presented.
Słowa kluczowe
Twórcy
autor
autor
autor
autor
  • Military University of Technology ul. Kaliskiego 2, 00-908 Warszawa, Poland tel.: +48 22 6897752, fax: +48 22 6837370, prybak@wat.edu.pl
Bibliografia
  • [1] Schaeffler, P., Rajner, W., Claar, D., Trendelenburg, T., Nishimura ,H., Properties, and Applications of Alulight® Closed-Cell Aluminum Foams. Production, 2005.
  • [2] Tabiei, A., Nilakantan, G., Reduction of Acceleration Induced Injuries from Mine Blasts under Infantry Vehicles. Dept. Of Aerospace Engineering and Engineering Mechanics University of Cincinnati, OH 45221, USA.
  • [3] Rust, M., Passive Protection Concepts. IBD Deisenroth Engineering.
  • [4] Genson, K., Vehicle shaping for mine blast damage reduction. Aerospace Engineering Department, 2006.
  • [5] Castanie, B., Bouvet, C., Aminanda, Y., Barrau, J. J., Thevenet, P., Modelling of lowenergy/ low-velocity impact on Nomex honeycomb sandwich structures with metallic skins. International Journal of Impact Engineering 35 (2008).
  • [6] Guruprasad, S., Mukherjee A,, Layered sacrificial claddings under blast loading Part II experimental studies. International Journal of Impact Engineering 24 2000.
  • [7] Hanssen, A. G., Enstock, L., Langseth, M., Close-range blast loading of aluminium foam panels. International Journal of Impact Engineering 27 2002.
  • [8] Light Improved Ballistic Armor (LIBA). Materiały firmy Mofet Etzion Yehuda, Defense Updated Internationale Online Defence Magazine. 2006.
  • [9] Patent USA US 8,025,005 B2 Sept. 27.2011, http://ip.com/patent/US8025005.
  • [10] Torre, L., Kenny, J. M., Impact testing and simulation of composite sandwich structures for civil transportation. Materials Engineering Center, University of Perugia, Loc Pentima Bassa 21, 05100 Terni, Italy 2000.
  • [11] Jiang, D., Liu, Y., Qi, Ch., Ma, Z. D., Raju, B., Bryzik, W., Innovative Composite Structure Design for Blast Protection. SAE Technical Paper Series 07MV-6.2007.
  • [12] Iveco Defence Vehicles LMV 4x4. Materiały reklamowe.
  • [13] http://defense-update.com/20110408_underbody_protected_hemtt.html.
  • [14] Rybak, P., Protecting panels for special purpose vehicles. Journal of Kones and Powertrain vol. 17, nr 1/2010, Warszawa2010.
  • [15] Pancerny Star, e-RAPORT MSPO 3/2009.
  • [16] www.magnum-x.pl, Nowa Technika Wojskowa nr 3/2010.
  • [17] Rusiński, E., Iluk, A., Ptak, M., Wybrane zagadnienia w modelowaniu obciążeń udarowych. XII Konferencja Naukowo-Techniczna Techniki Komputerowe w Inżynierii Słok k. Bełchatowa 2011.
  • [18] Kolenda, J., Stanowisko do badania energochłonności osłon. Zeszyty Naukowe AMW, rok XLX Nr 2 (177) 2009.
  • [19] Kiński, A., Sitarski, M., współpraca Miernik, R., Rosomak okiem użytkowników. Nowa Technika Wojskowa Nr1/2012.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ8-0020-0011
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.