참고문헌
- Atapek, S.H. (2012), "Development and characterization of ballistic steels according to physical metallurgical principles", M.Sc. Dissertation; Kocaeli University, Kocaeli, Turkey.
- Balakrishnan, M., Balasubramanian, V. and Madhusudhan Reddy, G. (2013), "Effect of hardfacing consumables on ballistic performance of Q&T steel joints", Defence Technol., 9(4), 249- 258. https://doi.org/10.1016/j.dt.2013.12.007
- Findik, F. and Tarim, N. (2003), "Ballistic impact efficiency of polymer composites", Compos. Struct., 61(3), 187-192. https://doi.org/10.1016/S0263-8223(03)00065-5
- Ford, R. (2006), Weapon: A Visual History of Arms and Armour, DK Publishing, London, UK.
- GAlvez, F., Cendón, D., García, N., Enfedaque, A. and SAnchez- GAlvez, V. (2009), "Dynamic Fracture Toughness of a High Strength Armor Steel", Eng. Fail. Anal., 16(8), 2567-2575. https://doi.org/10.1016/j.engfailanal.2009.04.020
- Gillespie, J.W. (2001), "Aluminum Foam Integral Armor: A New Dimension in Armor Design", Compos. Struct., 52(3-4), 381- 395. https://doi.org/10.1016/S0263-8223(01)00029-0
- Iqbal, M.A., Senthil, K., Bhargava, P. and Gupta, N.K. (2015), "The characterization and ballistic evaluation of mild steel", Int. J. Impact Eng., 78(4), 98-113. https://doi.org/10.1016/j.ijimpeng.2014.12.006
- Jena, P.K., Mishra, B., Kumar, K.S. and Bhat, T.B. (2010), "An experimental study on the ballistic impact behavior of some metallic armour materials against 7.62 mm deformable projectile", Mater. Des., 31(7), 3308-3316. https://doi.org/10.1016/j.matdes.2010.02.005
- Karagoz, S., Atapek, H. and Yilmaz, A. (2007), "Development of a quenched and tempered steel as a ballistic material with alloying and heat treatment", Proceedings of IV. Iron&Steel Semposium, KarabUk, Turkey, November.
- Kilic, N., Ekici, B. and Hartomacioglu, S. (2015), "Determination of penetration depth at high velocity impact using finite element method and artificial neural network tools", Defence Technol., 11(2), 110-122. https://doi.org/10.1016/j.dt.2014.12.001
- Kpenyigba, K.M., Jankowiak, T., Rusinek, A., Pesci, R. and Wang, B. (2015), "Effect of projectile nose shape on ballistic resistance of interstitial-free steel sheets", Int. J. Impact Eng., 79(5), 83- 94. https://doi.org/10.1016/j.ijimpeng.2014.10.007
- Lane, R., Craig, B. and Babcock, W. (2002), "Materials for Blast and Penetration Resistance", The AMPTIAC Quartely, 6(4), 39- 45.
- Li, R., Fan, Q., Gao, R., Huo, L., Wang, F. and Wang, Y. (2014), "Effects of dynamic mechanical properties on the ballistic performance of a new near-b titanium alloy Ti684", Mater. Des., 62(5), 233-240. https://doi.org/10.1016/j.matdes.2014.05.044
- Naik, N.K. and Shrirao, P. (2004), "Composite Structures Under Ballistic Impact", Compos. Struct., 66(1-4), 579-590. https://doi.org/10.1016/j.compstruct.2004.05.006
- Ponguru Senthil, P., Bhav Singh, B., Siva Kumar, K. and Gogia, A.K. (2015), "Effect of heat treatment on ballistic performance of an armour steel against long rod projectile", Int. J. Impact Eng., 80(6), 13-23. https://doi.org/10.1016/j.ijimpeng.2014.12.003
- Ramavat, S., Thorat, D. and Prashant, C. (2012), "Simulation of bullet impact on bullet resistant steel plate", Simulation Driven Innovation, HTC 2012, USA.
- Rakvag, K.G., Borvik, T., Westermann, I. and Hopperstad, O.S. (2013), "An experimental study on the deformation and fracture modes of steel projectiles during impact", Mater. Des., 51(10), 242-256. https://doi.org/10.1016/j.matdes.2013.04.036
- Russell, B.P. (2014), "Multi-hit ballistic damage characterisation of 304 stainless steel plates with finite elements", Mater. Des., 58(6), 252-264. https://doi.org/10.1016/j.matdes.2014.01.074
- Sangoy, L., Meunier, Y. and Pont, G. (1988), "Steels for Ballistic Protection", Israel J. Technol., 24, 319-326.
- Shokrieh, M.M. and Javadpour, G.H. (2008), "Penetration analysis of a projectile in ceramic composite armor", Compos. Struct., 82(2), 269-276. https://doi.org/10.1016/j.compstruct.2007.01.023
- Sukumar, G., Singh, B.B., Bhattacharjee, A., Sivakumar, K. and Gogia, A.K. (2015), "Effect of heat treatment on mechanical properties and ballistic performance of Ti-4Al-2.3V-1.9Fe alloy", Materials Today: Proceedings, 2(4-5), 1102-1108. https://doi.org/10.1016/j.matpr.2015.07.015
- Tarim N., Findik, F. and Uzun, H. (2002), "Ballistic impact performance of composite structures", Compos. Struct., 56(1), 13-20. https://doi.org/10.1016/S0263-8223(01)00177-5
- Ubeyli, M., Demir, T., Deniz, H., Yildirim, O. and Keles, O. (2010), "Investigation on the ballistic performance of a dual phase steel against 7.62 mm AP projectile", Mat. Sci. Eng. A, 527(7-8), 2036-2044. https://doi.org/10.1016/j.msea.2009.11.040
- URL (2016), www.thehighroad.org (Last accessed date: November 2016).
- Wang, Y.L., Hui, S., Liu, R. and Ye, W. (2015), "Evaluation of dynamic performance and ballistic behavior of −T5i Al−5Mo− 5V−3Cr−1Zr alloy", Trans. Nonferrous Met. Soc. China, 25, 429-436. https://doi.org/10.1016/S1003-6326(15)63620-2
- Wang, Y., Chen, X., Young, R. and Kinloch, I. (2016), "A numerical and experimental analysis of the influence of crimp on ballistic impact response of woven fabrics", Compos. Struct., 140(4), 44-52. https://doi.org/10.1016/j.compstruct.2015.12.055
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