4BEN-DOR G, DUBINSKY A, ELPERIN T. Shape optimization of impactor penetrating into concrete or limestone targets [J]. International Journal of Solids and Structures, 2003, 40(17): 4 487--4 500.
5CHEN X W, LI Q M. Deep penetration of a non-deformable projectile with different geometrical characteristics[J]. International Journal of Impact Engineering, 2002, 27 (6): 619--637.
6JOSEPH R M. Kinetic energy cavity penetrator weapon, USP2004/0231552[R]. 2004.
7Livermore Software Technology Corporatoom. LS-DYNA theoretical manual and user manual[M]. Livermore; Livermore Software Technology Corporation, 1998.
8HOLMQUIST T J, JOHNSON G R,COOK W H. A computational constitutive model for concrete subjected to large strains,high strain rate, and high pressures[C]. 14th International Symposium on Ballistics. Quebec, Canada: IBC, 1993: 591--600.
9卡恰诺夫 周承倜 译.塑性理论基础[M].北京:人民教育出版社,1983.332-385.
10Forrestal M J, Tzou D Y. A spherical cavity-expansion penetration model for concrete targets[J]. International Journal of Impact Engineering, 1997,34:4127-4146.
6Q M Li, et al. Local impact effects of hard missiles on concrete tar- gets [ J ]. International Journal of Impact Engineering, 2005,32 : 224-284.
7C W Young. Penetration equations[J]. SAND 97-2426, 1997.
8C V Chelapati, R P Kennedy, I B Wall. Probabilistie assessment of hazard for nuclear structures[J]. Nucl Eng Des. 1972,19:333 -364.
9C Y Tham. Numerical and empirical approach in predicting the penetration of a concrete target by an ogive-nosed projectile [ J ]. Finite Elements in Analysis and Design, 2006,42:1258-1268.