Christiansen E L. Highly Oblique Impacts into Thick and Thin Targets [J]. Int J Impact Eng, 1993, 14: 157-168.
[2]
Burchell M J, Gey I D S. Oblique Hypervelocity Impact on Thick Glass Targets [J]. Mater Sci Eng, 2001, A303: 134-141.
[3]
Lamontage C G, Manuelpillai G N, Taylor E A, et al. Normal and Oblique Hypervelocity Impact on Carbon Fibre/Peek Composites [J]. Int J Impact Eng, 1999, 23: 519-532.
[4]
Scott A H. Determination of an Empirical Model for the Prediction of Penetration Hole Diameter in Thin Plates from Hypervelocity Impact [J]. Int J Impact Eng, 2004, 30: 303-321.
[5]
Guan G S, Zhang W, Pang B J, et al. A Study of Penetration Hole Diameter in Thin Al-Plate by Hypervelocity Impact of Al-Spheres [J]. Chinese Journal of High Pressure Physics, 2005, 19(2): 132-138. (in Chinese)
Guan G S, Pang B J, Ha Y, et al. Experimental Investigation of High-Velocity Impact on Aluminum Alloy Whipple Shield [J]. Explosion and Shock Waves, 2005, 25(5): 461-466. (in Chinese)
Guan G S, Pang B J, Chi R Q, et al. A Study of Damage in Aluminum Dual-Wall Structure by Hypervelocity Impact of Al-Spheres [J]. Key Engineering Materials, 2006, 324-325: 197-200.
[10]
Schonberg W P. Hypervelocity Impact Penetration Phenomena in Aluminum Space Structure [J]. J Aerospace Eng, 1990, 3(3): 173-185.