[1] ZHANG Yong-qiang, GUAN Gong-shun, ZHANG Wei, et al. Characteristics of debres cloud produced by normal impact of spherical projectile on thin plate shield[J]. Explosion and Shock Waves, 2007, 27(6): 546-552.
[2] LIN Mu-sen, PANG Bao-jun, GONG Hai-peng, et al. Damage of 5A06 whipple shield caused by hypervelocity impact of Al2017 sphere[J]. Journal of Astronautics, 2009, 30(4): 1686-1692.
[3] LIU Sen, XIE Ai-min, HUANG Jie, et al. Four sequences laser shadowgraph for the visualization of hypervelocity impact debris cloud[J]. Journal of Experiments in Fluid Mechanics, 2010, 24(1): 1-5
[5] DEAR J P, LEE H, BROWN S A.Impact damage processes in composite sheet and sandwich honeycomb materials[J]. Internal Journal of Impact Engineering, 2005, 32(1-4): 130-154.
[6] AKAHOSHI Y, KAJI M, HATA H. Measurement of mass,spray angle and velocity distribution of fragment cloud[J]. Internal Journal of Impact Engineering, 2003, 29(1-10): 845-853.
[7] DESTEFANIS R, SCHAFER F, LAMBERT M, et al. Selecting enhanced space debris shields for manned spacecraft[J]. International Journal of Impact Engineering, 2006, 33(1-12): 219-230.
[8] IOILEV A G, BASHUROV V V, BELOV G V, et al. Multi-layered shielding against hypervelocity space debris:conceptual study of implementation of high-porous material layer[J]. International Journal of Impact Engineering, 2003, 29(1-10): 357-367.
[9] LUO Zhen-xiong. The particle field holographic reconstraction and the image processing technology[D]. Mianyang:China Academic of Engineering Physics, 2005: 20-34.
[10] ANG J A, HANSCHE B D, KONRAD C H, et al.Pulsed holography for hypervelocity impact diagnistics[J]. International Journal of Impact Engineering, 1993, 14(1-4): 13-24.
[11] SHEWCHUK J R.Triangle:a two dimensional quality mesh generator and delaunay triangulator[EB/OL](2005-07-28)[2011-05-10]. http://www.cs.cmu. edu/quake/triangle.html.