D. Gillen and W. G. Morrison, Aviation security: Costing, pricing, finance and performance, Journal of Air Transport Management, vol.48, pp.1-12, 2015.
DOI : 10.1016/j.jairtraman.2014.12.005

URL : https://doi.org/10.1016/j.jairtraman.2014.12.005

M. Sanai and G. R. Greeneld, Hardened Luggage Container, United States Patent US 5, p.665, 1993.

J. Fray, Venting a space to relieve pressure generated by an explosion, British Aerospace Public Limited Company 07, p.495, 1992.

M. Hararat-tehrani, Decompression panel for a separation device in an aircraft, Deutsche Airbus Gmbh 07, 1992.

G. S. Settles, B. T. Keane, B. W. Anderson, and J. A. Gatto, Shock waves in aviation security and safety, Shock Waves, vol.12, issue.4, pp.267-275, 2003.
DOI : 10.1007/s00193-002-0162-1

D. Backman and R. Gould, Blast Response of a Pressurized Aircraft Fuselage Measured Using High-Speed Image Correlation, Experimental Techniques, vol.39, issue.5, pp.4-9, 2015.
DOI : 10.1111/ext.12001

R. L. Veldam, J. Ari-gur, and C. Clum, Response of pre-pressurized reinforced plates under blast loading, International Journal of Impact Engineering, vol.35, pp.240-250, 2008.

C. Soutis, G. Mohamed, and A. Hodzic, Modelling the structural response of GLARE panels to blast load, Composite Structures, vol.94, issue.1, pp.267-276, 2011.
DOI : 10.1016/j.compstruct.2011.06.014

A. Dacko and J. Toczyski, Vulnerability analysis of aircraft fuselage subjected to internal explosion, The Arhive of, Mechanical Engineering, vol.58, 2011.

T. Kotzakolios, D. E. Vlachos, and V. Kostopoulos, Blast response of metal composite laminate fuselage structures using finite element modelling, Composite Structures, vol.93, issue.2, pp.665-681, 2011.
DOI : 10.1016/j.compstruct.2010.08.012

F. Masi, Blast actions from high explosives. Studies on their simulation and eects

P. Vannucci, F. Masi, and I. Stefanou, A study on the simulation of blast actions on a monumental structure, pp.1447783-1447786

H. Jones and A. R. Miller, The Detonation of Solid Explosives: The Equilibrium Conditions in the Detonation Wave-Front and the Adiabatic Expansion of the Products of Detonation, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, vol.194, issue.1039, p.480, 1948.
DOI : 10.1098/rspa.1948.0093

M. L. Wilkins, The equation of state of PBX 9404 and LX 04-01, 1968.

E. L. Lee, H. C. Horning, and J. W. Kury, Adiabatic expansion of high explosives detonation products, p.7797, 1964.
DOI : 10.2172/4783904

E. Lee, M. Finger, and W. Collins, JWL equation of state coecient for high explosives, p.16189, 1973.

V. Karlos and G. Solomos, Calculation of Blast Loads for Application to Structural Components, Joint Research Center of the European Commission, 2011.

C. N. Kingery and G. Bulmash, Air blast parameters from TNT spherical air burst and hemispherical burst, 1984.

P. Vannucci, I. Stefanou, and F. Masi, Cathédrales durables, CNRS, Final report, p.2017

F. Masi, I. Stefanou, and P. Vannucci, A study on the eects of an explosion in the Pantheon of Rome, Engineering Structures (submitted), pp.1493006-1493007

G. Johnson and W. H. Cook, A constitutive model and data for metals subjected to large strains, high strain rates and high temperatures The Hague, The Netherlands, Proceedings of the 7th International Symposium on Ballistics, pp.541-547, 1983.

E. Corona and G. E. Orient, An Evaluation of the Johnson-Cook Model to Simulate Puncture of 7075 Aluminum Plates, Sandia National Laboratories, 2014.

G. Kray, Failure modeling of titanium 6Al-4V and aluminum 2024-T3 woth the Johnson-Cook material model, 2002.

G. Zhu, W. Glodsmith, and C. K. Dharan, Penetration of laminated Kevlar by projectiles -I. Experimental investigation, International Journal of Solids Structures, vol.29, pp.399-420, 1992.

B. A. Cheeseman and B. A. Bogetti, Ballistic impact into fabric and compliant composite laminates, Composite Structures, vol.61, issue.1-2, p.33
DOI : 10.1016/S0263-8223(03)00029-1

Z. Hashin, Failure Criteria for Unidirectional Fiber Composites, Journal of Applied Mechanics, vol.47, issue.2, pp.329-334, 1980.
DOI : 10.1115/1.3153664

Y. Wang, J. Li, and D. Zhao, Mechanical properties of fiber glass and Kevlar woven fabric reinforced composites, Composites Engineering, vol.5, issue.9, pp.1159-1175, 1995.
DOI : 10.1016/0961-9526(95)00100-2

S. H. Goods, C. L. Neuschwanger, C. Henderson, and D. M. Skala, Mechanical properties and energy absorption characteristics of a polyurethane foam, Sandia National Laboratories, pp.97-8490, 2014.