Christiansen E L, Cykowskia E, Ortegaa J. Highly oblique impacts into thick and thin targets [J]. Int J Impact Eng, 1993, 14(1-4): 157-168.
[2]
Higashide M, Koura T, Akahoshi Y, et al. Debris cloud distributions at oblique impacts [J]. Int J Impact Eng, 2008, 35(12): 1573-1577.
[3]
Guan G S, Ha Y, Pang B J. Investigation on damage characteristics of thin Al-plates by oblique hypervelocity impact of Al-sphere [J]. Chinese Journal of High Pressure Physics, 2007, 21(4): 347-353. (in Chinese)
Nasit A, Wilbeck J S. Debris fragment characterization in oblique hypervelocity impacts [J]. Int J Impact Eng, 1993, 14(1-4): 37-48.
[6]
Rabb R J, Fahrenthold E P. Numerical simulation of oblique impact on orbital debris shielding [J]. Int J Impact Eng, 1999, 23(1): 735-744.
[7]
Lee M. Hypervelocity impact into oblique ceramic/metal composite system [J]. Int J Impact Eng, 2003, 29(1-10): 417-424.
[8]
Orphal D L. Highly oblique impact and penetration of thin targets by steel spheres [J]. Int J Impact Eng, 1999, 23(1): 687-698.
[9]
Burchell M J, Grey I D S. Oblique hypervelocity impact on thick glass targets [J]. Mater Sci Eng A, 2001, 303(1-2): 134-141.
[10]
Schonberg W P. Hypervelocity impact penetration phenomena in aluminum space structures [J]. J Aerosp Eng, 1990, 3(3): 173-185.
[11]
Guan G S, Ha Y, Pang B J, et al. Crater distribution on the rear wall of aluminum dual-sheet structure under hypervelocity normal impact [J]. Chinese Journal of Mechanical Engineering, 2009, 45(3): 246-251. (in Chinese)