PHYSICS OF INTERPLANETARY DUST CAPTURE VIA IMPACT INTO ORGANIC POLYMER FOAMS

被引:43
作者
ANDERSON, WW
AHRENS, TJ
机构
关键词
D O I
10.1029/93JE03147
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The physics of hypervelocity impacts into foams is of interest because of the possible application to interplanetary dust particle (IDP) capture by spacecraft. We present a model for the phenomena occurring in such impacts into low-density organic polymer foams. Particles smaller than foam cells behave as if the foam is a series of solid slabs and are fragmented and, at higher velocities, thermally altered. Particles much larger than the foam cells behave as if the foam were a continuum, allowing the use of a continuum mechanics model to describe the effects of drag and ablation. Fragmentation is expected to be a major process, especially for aggregates of small grains. Calculations based on these arguments accurately predict experimental data and, for hypothetical IDPs, indicate that recovery of organic materials will be low for encounter velocities greater than 5 km s(-1) For an organic particle 100 mu m in diameter, similar to 35% of the original mass would be collected in an impact at 5 km s(-1), dropping to similar to 10% at 10 km s(-1) and similar to 0% at 15 km s(-1). For the same velocities the recovery ratios for troilite (FeS) are similar to 95%, 65%, and 50%, and for olivine (Mg2SiO4) they are similar to 98%, 80%, and 65%, demonstrating that inorganic materials are much more easily collected. The density of the collector material has only a second-order effect, changing the recovered mass by <10% of the original mass.
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页码:2063 / 2071
页数:9
相关论文
共 21 条
[1]  
BARRETT RA, 1992, P LUNAR PLANET SCI, V22, P203
[2]   HUGONIOT DATA FOR PYRRHOTITE AND THE EARTHS CORE [J].
BROWN, JM ;
AHRENS, TJ ;
SHAMPINE, DL .
JOURNAL OF GEOPHYSICAL RESEARCH, 1984, 89 (NB7) :6041-6048
[3]   PHASE-TRANSITIONS, GRUNEISEN-PARAMETER, AND ELASTICITY FOR SHOCKED IRON BETWEEN 77-GPA AND 400-GPA [J].
BROWN, JM ;
MCQUEEN, RG .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1986, 91 (B7) :7485-7494
[4]  
BUECHE F, 1962, PHYSICAL PROPERTIES
[5]  
Carslaw H.S., 1959, CONDUCTION HEAT SOLI
[6]  
CHASE MW, 1985, J PHYS CHEM REF DATA, V14, P1
[7]  
DEAN JA, 1985, LANGES HDB CHEM
[8]   EFFECT OF VOID-SIZE DISTRIBUTION ON THE HUGONIOT STATE AT LOW SHOCK PRESSURES [J].
GRIFFITHS, DJ ;
BUETTNER, DJ ;
TSOU, P .
JOURNAL OF APPLIED PHYSICS, 1991, 70 (09) :4790-4796
[9]  
Kittel C., 1956, INTRO SOLID STATE PH
[10]  
Landau L. D., 1976, FLUID MECH-SOV RES, V1