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长寿命载人航天器热控白漆退化性能试验研究 总被引:1,自引:0,他引:1
针对长寿命载人航天器热控白漆在空间环境下的性能退化评估需要,文章对KS-ZA白漆热控涂层进行了地面原子氧、近紫外远紫外和电子质子辐照试验,获取了涂层的空间环境退化数据,得到了涂层与原子氧的反应率,分析了涂层的长期原子氧剥蚀情况。利用经验模型对涂层的紫外辐照性能进行了数据拟合和退化预示,评估了涂层长期紫外辐照退化性能。结果表明,KS-ZA白漆具有良好的空间环境稳定性,可以满足长寿命载人航天器的热控需要。研究结果将为载人航天器热控设计与分析提供试验和退化数据支持。 相似文献
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为了深入认识和抑制航天器材料空间辐照损伤在地面环境中的恢复,在模拟的空间环境下对S781白漆进行了90keV电子辐照试验。研究了电子辐照后,试样分别在真空环境下、真空室注入空气后和空气中储存几小时后辐照诱发的光谱反射系数和太阳吸收比的变化。结果表明,S781白漆光学性能退化的恢复主要发生于与空气接触的数分钟内。此外,液氮环境对S781白漆的电子辐照损伤和光学性能退化具有保护作用。液氮的保护机制不仅在于它抑制了氧在材料表面的化学吸附,还在于它对辐照诱发缺陷的冻析效应。 相似文献
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空间紫外辐射环境及效应研究 总被引:7,自引:3,他引:4
空间紫外辐照度虽然很低(只有约118.1 W/m2),但是由于单个紫外光子的能量很高,可以使大多数材料分子的化学键断裂,所以紫外辐射会对航天器外露材料的性能产生严重影响。紫外辐射可以导致航天器的热控涂层光学性质改变,使有机聚合物材料发生降解,光学、力学性能降低。文章介绍了空间紫外辐射环境的模型,列举了对航天器常用的有机粘合剂、柔性材料、有机薄膜等的紫外辐射效应,并对空间紫外辐射效应的深入研究提出建议。 相似文献
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The variations of dielectric properties of epoxyamine polymers and polymer-based composite materials during ground-based tests imitating the influence of space environment factors and under the conditions of long-term active experiments using the ERE instrumentation onboard the Mir station are compared. The influence of space environment factors is shown to result in both reversible and irreversible changes of dielectric properties. The former are related to temperature effects and effects of charged particles. The latter are related to the removal of low-molecular components from the composition of binders in a vacuum, and to increasing density of polymeric lattice under an effect of thermal cycling and various types of radiations. It is established that the influence of ultra-violet radiation reveals itself, first of all, in changing temperature of samples, while the influence of irradiation by a flux of electrons is reduced to charge accumulation and discharges.Translated from Kosmicheskie Issledovaniya, Vol. 43, No. 1, 2005, pp. 27–35.Original Russian Text Copyright © 2005 by Babaevsky, Kozlov, Churilo, Slagoda. 相似文献
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ESA/ESTEC的空间环境试验能力研究 总被引:2,自引:0,他引:2
这里的空间环境主要指电子、质子、离子、太阳紫外、原子氧、碎片、极端温度、污染等环境,这些环境在航天器中产生总剂量效应、单粒子效应、充放电效应等各种有害效应,甚至会引发航天器故障与异常。鉴于空间环境不利影响的严重性和复杂性,欧洲空间局(ESA)在欧洲空间技术研究中心(ESTEC)的产品保证与安全部门建立了空间环境试验室,目的为ESA航天器的空间环境防护提供先进的试验验证手段。文章介绍ESA/ESTEC的空间环境地面试验能力,包括空间环境模拟设备、测试仪器及其试验相关的标准;介绍ESTEC航天器研制组织体系及其空间环境试验室所在的产品保证与安全部门的职能和作用,分析研究了这些部门及空间环境试验室对ESA航天器质量、可靠性、安全性的基础保证作用;最后就完善我国空间环境试验能力提出建议。 相似文献
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天基紫外预警是反弹道导弹武器的重要手段。文章从地球日盲紫外空间背景和导弹紫外辐射特性两方面进行分析,论证天基紫外空间预警系统可以获得较高的信噪比和信杂比,能够实现低虚警率的空间预警。同时提出了天基紫外空间预警系统可能的3种工作体制:单一基于紫外波段的天基预警系统存在发现目标较晚的问题;紫外—红外双波段天基预警系统可以实现更低的空间预警虚警率;红外—紫外光谱复合天基预警系统可通过紫外光谱观测辨别导弹种类。最后,文章对现有紫外探测技术进行分析,论证了AlGaN和SiC探测器用于天基紫外预警的可行性,并对其工作模式进行了分析。 相似文献
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The plausibility that life was imported to Earth from elsewhere can be tested by subjecting life-forms to space travel. Ultraviolet light is the major liability in short-term exposures (Horneck et al., 2001 ), and plant seeds, tardigrades, and lichens-but not microorganisms and their spores-are candidates for long-term survival (Anikeeva et al., 1990 ; Sancho et al., 2007 ; J?nsson et al., 2008 ; de la Torre et al., 2010 ). In the present study, plant seeds germinated after 1.5 years of exposure to solar UV, solar and galactic cosmic radiation, temperature fluctuations, and space vacuum outside the International Space Station. Of the 2100 exposed wild-type Arabidopsis thaliana and Nicotiana tabacum (tobacco) seeds, 23% produced viable plants after return to Earth. Survival was lower in the Arabidopsis Wassilewskija ecotype and in mutants (tt4-8 and fah1-2) lacking UV screens. The highest survival occurred in tobacco (44%). Germination was delayed in seeds shielded from solar light, yet full survival was attained, which indicates that longer space travel would be possible for seeds embedded in an opaque matrix. We conclude that a naked, seed-like entity could have survived exposure to solar UV radiation during a hypothetical transfer from Mars to Earth. Chemical samples of seed flavonoid UV screens were degraded by UV, but their overall capacity to absorb UV was retained. Naked DNA encoding the nptII gene (kanamycin resistance) was also degraded by UV. A fragment, however, was detected by the polymerase chain reaction, and the gene survived in space when protected from UV. Even if seeds do not survive, components (e.g., their DNA) might survive transfer over cosmic distances. 相似文献
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随着航天器在轨寿命的延长,分子污染对其空间光学系统在轨安全和可靠性的影响越来越突出。文章首先阐明空间分子污染的来源及其对空间光学元件的效应;之后分析温度、紫外辐射、激光照射等空间自然环境和人工环境对光学元件分子污染的影响,揭示空间环境影响光学元件分子污染的演变过程和形态;进而给出地面预处理、表面改性、优化系统设计和在轨主动清除等方面的空间光学元件分子污染减缓与清除技术;最后提出分子污染的高灵敏监测、热控及分子污染吸附复合涂层、分子污染在轨高效去除技术、先进的协同模拟设备和仿真技术等研究方向。 相似文献