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Penetration of Hypervelocity Projectiles into Low Density Materials
Published online by Cambridge University Press: 12 April 2016
Abstract
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Spherical nylon projectiles of 7mm diameter and up-to 4km/s velocities were penetrated into three types of targets; aluminum multisheet stacks, foamed polystyrene, and 1-atm air. Penetration depth, recovery rate of the projectiles were determined as a function of projectile velocity and target density, and a new type of dust collector is proposed.
- Type
- Cometary Dust: Observations and Evolution
- Information
- International Astronomical Union Colloquium , Volume 126: Origin and Evolution of Interplanetary Dust , 1991 , pp. 281 - 284
- Copyright
- Copyright © Kluwer 1991
References
Fechig, H., Nagel, K., and Pailer, N. (1980) ‘Collisional Processes of Iron and Steel Projectiles on Targets of Different Densities’, in Halliday, I. and Mclntosh, B. A. (eds.). Solid Particles in the Solar System, D. Reidel Publishers, Boston, pp. 357–364.Google Scholar
Fujiwara, A., and Radono, T. (1990) ‘Penetration of Hypervelocity Projectiles into Aluminum Multisheet Stacks’, Jap. J. Appl. Phys.
29, 1620–1624.CrossRefGoogle Scholar
Ishibash, T., Fujiwara, A., and Fujii, N. (1990), ‘Penetration of Hypervelocity Projectiles into Foamed Polystyrene’, Jap. J. Appl. Phys. in press.Google Scholar
Tsou, P., Brownlee, D. E., and Albee, A. L. (1986), ‘Comet Coma Sample Return’, ESA spec. Publ. ESA SP-250
3, 237-24.Google Scholar
Veverka, J., Langevin, Y., Farquhar, R., and Fulchignoni, M. (1989) ‘Spacecraft Exploration of Asteroids: The 1988 Perspective’ in Binzel, R. P., Gehrels, T., and Matthews, M. S. (eds.), Asteroids II, the University of Arizona Press, Tucson, pp. 970–993.Google Scholar
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