Open Access Research Article

Numerical and Experimental Study on the Locally Blast Loaded Polyurea Coated Steel Plates

FLORINA BUCUR, EUGEN TRANA, ADRIAN ROTARIU
Published 30 Sep 2019
Pages 492–499

Abstract

The damages and casualties inflicted by mine and IED attacks in security challenging areas generated a strong and quick response from nations all over the world. As a part of this response several national and private research facilities increased their efforts in identifying and implementing new ways or technologies to enable blast wave mitigation. The current paper aim to investigate the opportunity of using polyurea coated steel plates as a possible new blast mitigation approach, as suggested by several investigators. In order to objectively conclude about the ability of polyurea coated plates to sustain locally blast loads several experimental tests were performed according to STANAG 4569 demands for a 1/6 scaled plate structure. In order to numerically validate the experimental results several Autodyn simulations were set-up. The numerical and experimental results exibits a fair correlation, both pointing towards a dismiss of the idea of using polyurea coated steel plates as structural and cost effective blast mitigation approach.

Keywords: coated metal plates; polyurea layer; blast load; numerical simulation

How to Cite this Article

BUCUR, F., TRANA, E., & ROTARIU, A. (2019). Numerical and Experimental Study on the Locally Blast Loaded Polyurea Coated Steel Plates. Materiale Plastice, 56(3), 492–499. https://doi.org/10.37358/MP.19.3.5216
BUCUR F, TRANA E, ROTARIU A. Numerical and Experimental Study on the Locally Blast Loaded Polyurea Coated Steel Plates. Materiale Plastice. 2019;56(3):492–499. doi: 10.37358/MP.19.3.5216
F. BUCUR, E. TRANA, and A. ROTARIU, "Numerical and Experimental Study on the Locally Blast Loaded Polyurea Coated Steel Plates,” Materiale Plastice, vol. 56, no. 3, pp. 492–499, 2019. doi: 10.37358/MP.19.3.5216
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