参考文献
[1] JONES N.Structure Impact [M]. Cambridge:Cambridge University Press, 1989.
[2] 陈志坚, 袁建红, 赵耀, 等. C-S模型参数及对非接触爆炸仿真分析的影响研究[J]. 振动与冲击, 2008, 27(6):60-63.
[3] 陈斌, 罗夕容, 曾首义. 穿甲子弹侵彻陶瓷/钢靶板的数值模拟研究[J]. 弹道学报, 2009, 21(1):14-18.
[4] JOHNSON G R, COOK W H. A constitutive model and data for metals subjected to large strains, high strain-rates and high temperatures [C]. Seventh International Symposium on Ballistics. The Hague, The Netherlands:1983:541-547.
[5] STEINBERG D J, GUINAN M W. Constitutive relations for the KOSPALL code [R]. LLNLRePort, 1973.
[6] STEINBERG D J, LUND C M. A constitutive model for strain rates from10-4 to 106 s-1 [J].Journal of Applied Physics, 1989,65(4):1528-1533.
[7] HOLMQUIST T J, JOHNSON G R, COOK W H. A computational constitutive model for concrete subjected to large strains, high strain rates and high pressures,14th international symposium on ballistics [C]. 1993.
[8] 张凤国, 李恩征. 混凝土撞击损伤模型参数的确定方法[J]. 弹道学报, 2001, 13(4):12-16.
[9] 熊益波. LS-DYNA中简单输入混凝土模型适用性分析[C]. 第十一届全国冲击动力学学术会议论文集, 陕西: 西安, 2013.
[10] TAYLOR G I. The Use of Flat-ended Projectiles for Determining Dynamic Yield Stress [J]. Proceedings of the Royal Society of London, 1948, 194:280-300.
[11] LS-DYNA KEYWORD USER'S MANUAL[Z]. LSTC, 2017.
[12] 吕剑, 等. 泰勒杆实验对材料动态本构参数的确认和优化确定[J]. 爆炸与冲击, 2006, 26(4):339-344.
[13] 郑伟. 含泡沫铝吸波层陶瓷复合装甲设计及其抗侵彻特性研究[D]. 哈尔滨: 哈尔滨工业大学, 2015.
[14] 辛春亮, 等. 由浅入深精通LS-DYNA [M]. 北京:中国水利水电出版社, 2019.
[15] 辛春亮, 等. TrueGrid和LS-DYNA动力学数值计算详解[M]. 北京:机械工业出版社, 2019.
[16] 彭建祥. Johnson-Cook本构模型和Steinberg本构模型的比较研究[D].绵阳:中国工程物理研究院, 2006.