SUMMERS et al., 1964 - Google Patents
The resistance of a variety of composite space structures to hypervelocity impactSUMMERS et al., 1964
- Document ID
- 13058935283009331380
- Author
- SUMMERS J
- NYSMITH C
- Publication year
- Publication venue
- 5th Annual Structures and Materials Conference
External Links
Snippet
One of the problems which must be considered by the designer of space vehicles is the hazard presented by the impact of meteoric debris. This debris is composed primarily of cometary material, which is porous and fragile, and a small fraction of asteroidal material …
- 239000002131 composite material 0 title description 4
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Sisemore et al. | The science and engineering of mechanical shock | |
Lambert | Hypervelocity impacts and damage laws | |
FI91323C (en) | An armor wall made of so-called active armor | |
Zhang et al. | Comparison of shielding performance of Al/Mg impedance-graded-material-enhanced and aluminum Whipple shields | |
CHRISTIANSEN | Advanced meteoroid and debris shielding concepts | |
Gehring | Theory of impact on thin targets and shields and correlation with experiment | |
Langdon et al. | The response of honeycomb core sandwich panels, with aluminum and composite face sheets, to blast loading | |
Elfer | Structural damage prediction and analysis for hypervelocity impacts: Handbook | |
Schonberg et al. | Spacecraft wall design for increased protection against penetration by orbital debris impacts | |
SUMMERS et al. | The resistance of a variety of composite space structures to hypervelocity impact | |
Schonberg | Hypervelocity impact penetration phenomena in aluminum space structures | |
Gongshun et al. | Crater distribution on the rear wall of AL-Whipple shield by hypervelocity impacts of AL-spheres | |
Morrison | A preliminary investigation of projectile shape effects in hypervelocity impact of a double-sheet structure | |
Schonberg et al. | Use of composite materials in multi-wall structures to prevent perforation by hypervelocity particle impact | |
Carey et al. | An empirical penetration equation for thin metallic films used in capture cell techniques | |
Victor | Warhead performance calculations for threat hazard assessment | |
Cour-Palais | The shape effect of non-spherical projectiles in hypervelocity impacts | |
Destefanis et al. | Testing of advanced materials for high resistance debris shielding | |
Nysmith et al. | An experimental investigation of the impact resistance of double-sheet structures at velocities to 24,000 feet per second | |
Schonberg et al. | Exterior spacecraft subsystem protective shielding analysis and design | |
Klinkrad et al. | Hypervelocity impact damage assessment and protection techniques | |
Ke et al. | Decelerating and recovery techniques for hypervelocity projectiles | |
Schonberg | Aluminum 2219-T87 and 5456-H116: A comparative study of spacecraft wall materials in dual-wall structures under hypervelocity impact | |
Sagdeev et al. | Dust hazard near Halley Comet in case of the VEGA project | |
Schonberg et al. | Projectile shape and material effects in hypervelocity impact response of dual-wall structures |