微流星体
空间环境
聚合物
材料科学
放气
天体生物学
近地轨道
复合材料
胶粘剂
热的
化学工程
空间碎片
航空航天工程
航天器
化学
物理
卫星
有机化学
图层(电子)
气象学
工程类
地球物理学
作者
Eitan Grossman,I. Gouzman
标识
DOI:10.1016/s0168-583x(03)00640-2
摘要
Polymers are widely used in space vehicles and systems as structural materials, thermal blankets, thermal control coatings, conformal coatings, adhesives, lubricants, etc. The low earth orbit (LEO) space environment includes hazards such as atomic oxygen, UV radiation, ionizing radiation (electrons, protons), high vacuum, plasma, micrometeoroids and debris, as well as severe temperature cycles. Exposure of polymers and composites to the space environment may result in different detrimental effects via modification of their chemical, electrical, thermal, optical and mechanical properties as well as surface erosion. The high vacuum induces material outgassing (e.g. low-molecular weight residues, plasticizers and additives) and consequent contamination of nearby surfaces. The present work reviews the LEO space environment constituents and their interactions with polymers. Examples of degradation of materials exposed in ground simulation facilities are presented. The issues discussed include the erosion mechanisms of polymers, formation of contaminants and their interaction with the space environment, and protection of materials from the harsh space environment.
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