袁勇, 陈辉, 胡震宇, 等. 海南发射场盐雾环境对航天器结构材料的影响研究[J]. 航天器环境工程, 2019, 36(1): 61-68 DOI: 10.12126/see.2019.01.010
引用本文: 袁勇, 陈辉, 胡震宇, 等. 海南发射场盐雾环境对航天器结构材料的影响研究[J]. 航天器环境工程, 2019, 36(1): 61-68 DOI: 10.12126/see.2019.01.010
YUAN Y, CHEN H, HU Z Y, et al. Effects of salt fog environment in Hainan launch site on spacecraft structural materials[J]. Spacecraft Environment Engineering, 2019, 36(1): 61-68. DOI: 10.12126/see.2019.01.010
Citation: YUAN Y, CHEN H, HU Z Y, et al. Effects of salt fog environment in Hainan launch site on spacecraft structural materials[J]. Spacecraft Environment Engineering, 2019, 36(1): 61-68. DOI: 10.12126/see.2019.01.010

海南发射场盐雾环境对航天器结构材料的影响

Effects of salt fog environment in Hainan launch site on spacecraft structural materials

  • 摘要: 文章在分析海南发射场的盐雾环境及成因并对大气中氯离子含量进行统计和对比的基础上,阐述了盐雾环境与航天器结构材料的作用机理,并对航天器结构用典型材料进行1年的库内暴露试验,详细考查了在海南发射场盐雾环境下,这些材料的腐蚀后微观形貌、腐蚀产物表面成分和物相,以及ZK61M镁合金的热控功能退化情况,并针对航天器在发射场测试与发射期间海洋大气盐雾环境影响给出评估分析。结果表明:航天器测试发射周期(按3个月计算)内,上述材料不会发生宏观腐蚀现象;发射后氯离子等盐雾成分在航天器表面附着并进入空间后,不会继续腐蚀或扩展。

     

    Abstract: Based on the analysis of the salt fog environment in the Hainan launch site and its origins, as well as a statistical analysis of the chloride content in the coastal atmosphere, this paper studies the effect of the salt fog environment on several typical spacecraft structural materials, as expressed by their microscopic appearance, the surface composition, and the XRD pictures taken after a one-year exposure test. The degradation of the thermal control function of the ZK61M magnesium alloys is analyzed. An assessment of the comprehensive effect for the pre-launch test and the after-launch flight period is made. It is indicated that no observable erosion would occur during an average pre-launch test period of three months, and that the salt fog contents such as the chlorine ions on the surface of those structural materials would not likely to get deeper or expand.

     

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