[1] Asay J R, Chhabildas L C, Dandekar D P. Shear Strength of Shock-Loaded Polycrystalline Tungsten [J]. J Appl Phys, 1980, 51: 4774-4783.
[2] Duffy T S, Ahrens T J. Compressional Sound Velocity, Equation of State, and Constitutive Response of Shock-Compressed Magnesium Oxide [J]. J Geophys Res, 1995, 100: 529-542.
[3] Asay J R, Chhabildas L C. Determination of the Shear Strength of Shock Copressed 6061-T6 Aluminum [A]//Proceedings of International Conference on the Metallurgical Effects of High Strain Rate Determination and Fabrication [C]. Albuquerque, 1980: 417-429.
[4] Chhabildas L C, Wise J L, Asay J R. Reshock and Release Behavior of Berylium [R]. SAND-80-2864C, 1980.
[5] Huang H, Asay J R. Compressive Strength Measurements in Aluminum for Shock Compression over the Stress Range of 4~22 GPa [J]. J Appl Phys, 2005, 98: 033524(1)-033524(16).
[6] Wang L L. Foundation of Stress Waves [M]. Beijing: National Defence Industry Press, 1985. (in Chinese)
[7] 王礼立. 应力波基础 [M]. 北京: 国防工业出版社, 1985.
[8] Hu Sh L. Laser Interferometry for Measuring Velocity [M]. Beijing: National Defence Industry Press, 2001. (in Chinese)
[9] 胡绍楼. 激光干涉测速技术 [M]. 北京: 国防工业出版社, 2001.
[10] Zhou X M, Jing F Q. VISAR's Data Processing VEX 2. 0 [J]. Chinese Journal of High Pressure Physics, 1999, 13(Supplement): 286-290. (in Chinese)
[11] 周显明, 经福谦. VISAR数据处理软件VEX 2. 0 [J]. 高压物理学报, 1999, 13(增刊): 286-290.
[12] Marsh S P. LASL Shock Hugoniot Data [Z]. US: Univercity of California Press, 1980.
[13] Steinberg D J, Cochran S G, Guinan M W. A Constitutive Model for Metals Applicable at High Strain Rate [J]. J Appl Phys, 1980, 51(3): 1498-1504.
[14] Duffy T S, Ahrens T J. Compressional Sound Velocity, Equation of State, and Constitutive Response of Shock-Compressed Magnesium Oxide [J]. J Geophys Res, 1995, 100: 529-542.