Modelling radially symmetric impact craters with Zernike polynomials

Author:

Wallis D.,Solomon C.J.,Kearsley A.T.,Graham G.,McBride N.

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,Ocean Engineering,Safety, Risk, Reliability and Quality,Aerospace Engineering,Automotive Engineering,Civil and Structural Engineering

Reference16 articles.

1. Review of hypervelocity penetration theories;Herrmann;Int J Impact Eng,1987

2. Experimental laws of cratering for hypervelocity impacts of spherical projectiles into thick target;Shanbing;Int J Impact Eng,1994

3. McDonnell JAM, Sullivan K. Hypervelocity impacts on space detectors: decoding the projectile parameters. In: McDonnell JAM, editor, Hypervelocity impacts in space. Unit for Space Sciences, University of Kent at Canterbury, 1991. p. 39–47.

4. Morphology of meteoroid and debris impact craters formed in soft metal targets on the ldef satelite;Love;Int J Impact Eng,1995

5. Craters in aluminium 1100 by soda-lime glass spheres at 1 to 7 km/s;Bernhard;Int J Impact Eng,1995

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