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Experimental investigation of selected explosion parameters for numerical model

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EN
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EN
The aim of presented work is examination of blast wave, especially incident and reflected wave pressure. Due to many difficulties and complexity of phenomenon a complete study for different charges should be done. In presented paper two cylindrical TNT charges were used, weighting respectively 100 g and 200 g. Pressure wave was examined using original test stand designed and developed on Department of Mechanics and Applied Computer Science. A test steel test plate with 5 mm thickness was equipped with pressure gauge to measure reflected wave. Additionally, the plate was placed on four special electroresistance strain gauges...To measure force Vishay EA-06-120-060LZ strain gauges were used. For amplification of the dynamometers with strain gauges, MS1001 INFEL bridge was used. The system was used to validate the results from reflected wave pressure gauge. Shock wave pressures was measured using a special sensor model 137A21 amd M350B21 made by PCB Piezotronics At specific distance there was also incident wave pressure gauge. In order to fully examine the dynamic response of the plate an accelerometer was used. As a result, pressure versus time and acceleration versus time plots were obtained. The results will be used to validate numerical model of blast wave impact on a plate.
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  • Military University of Technology Department of Mechanics and Applied Computer Science Gen. Sylwestra Kaliskiego Street 2, 00-908 Warsaw, Poland tel. +48 22 6837201, +48 22 6839226, +48 22 6839849, fax: +48 22 6839355, wbarnat@wat.edu.pl
Bibliografia
  • [1] Małachowski, J., Niezgoda, T., Research of Elastomeric Protective Layers Subjected to Blast Wave, Applied Mechanics and Materials, Vol. 82, pp. 680-685, 2011.
  • [2] Baranowski, P., Małachowski, J., Niezgoda, T., Numerical Analysis of Vehicle Suspension System Response Subjected to Blast Wave, Applied Mechanics and Materials, Vol. 82, pp. 728-733, 2011.
  • [3] Włodarczyk, E., Podstawy fizyki wybuchu, Wydawnictwo WAT, 2012.
  • [4] Staniukowicz, K. P., Fizyka wzrywa, Moskwa 1975.
  • [5] Le Blanc, G., Adourn, M., Lapoujade, V., External Blast Load on Structures – Empirical Approach, 5th European LS-DYNA Users Conference, UK 2005.
  • [6] Ergonenc, C., Development and Design of Closed-Cell Aluminum Foam-Based Lightweight Sandwich Structures for Blast Protection, Doctoral Thesis, Turkey 2008.
  • [7] Baker, W. E., Explosions in Air, University of Texas Press, Austin & London 1973.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ8-0020-0001
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