->M. Nilsson, Constitutive Model for ARMOX 500T and ARMOX
600T at Low and Medium Strain Rates. Technical Report FOI-
R-1068-SE, Swedish Defence Research Agency, Stockholm,2003.
-> W.J. Kury, D. Breithaupt, and M.C. Tarver, “Detonation waves
in trinitrotoluene”, Shock Waves 9, 227–237 (1999).
https://www.researchgate.net/publication/303600766_An_Investigation_of_Constitutive_Behaviour_of_Armox_500T_Steel_and_Armour_Piercing_Incendiary_Projectile_Material https://www.researchgate.net/publication/339049781_Identification_of_Armox_500T_steel_failure_properties_in_the_modeling_of_perforation_problems https://core.ac.uk/download/pdf/219748103.pdf https://dspace.lib.cranfield.ac.uk/bitstream/handle/1826/15261/Lesmana%20D%2C%20259445%2C%20Thesis%20-%20Final%20-%20for%20final%20publication.pdf?sequence=1&isAllowed=y\ failure parameters -
https://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.924.1340&rep=rep1&type=pdfSaleh, M., Luzin, V., Kariem, M.M., and Ruan, D., “Analysis of the Residual Stress in ARMOX
500T Armour Steel and Numerical Study of the Resultant Ballistic Performance”, Materials
Research Proceedings Vol 2, pp. 437-442, 2016.
https://www.mrforum.com/wp-content/uploads/open_access/9781945291173/74.pdf