高速空间碎片撞击GEO航天器锂离子蓄电池风险分析与试验验证设想

Risk assessment and experimental verification of hypervelocity space debris impacts on lithium-ion battery packs for GEO spacecraft

  • 摘要: 当高速空间碎片或微流星体撞击暴露于外太空中的锂离子蓄电池组时,可能击穿电池单体壳体,导致正负极短路,并进一步诱发热失控甚至起火。为研究空间碎片高速撞击对锂离子蓄电池单体的损伤机理,文章开展了锂离子蓄电池单体结构分析,调研了地面民用锂离子电池针刺试验、NASA 刘易斯研究中心氢镍电池单体撞击试验以及NASA空间站锂离子电池高速撞击试验,并提出了空间碎片高速撞击锂离子蓄电池单体的地面验证试验初步方案。结合GEO航天器特点,分析了锂离子蓄电池单体遭受空间碎片与微流星体撞击的风险,提出了相应的防护措施,可为锂离子蓄电池组防空间碎片撞击设计提供参考。

     

    Abstract: When hypervelocity space debris or micrometeoroids strike lithium-ion battery packs exposed to the outer space environment, the cell casing may be penetrated, inducing internal short circuits and subsequently triggering thermal runaway or even fire. To investigate the damage mechanisms of lithium-ion cells under hypervelocity impacts, structural analyses of the cells were performed. Ground-based nail penetration tests on commercial lithium-ion batteries, impact tests on nickel-hydrogen battery cells conducted by NASA Lewis Research Center, and hypervelocity impact tests on lithium-ion batteries aboard the International Space Station were reviewed. A preliminary ground-based test scheme for hypervelocity impacts on lithium-ion cells was also proposed. Based on the operational characteristics of GEO spacecraft, the impact risk from space debris and micrometeoroids to lithium-ion cells was assessed, and corresponding protection measures were suggested. This work provides a technical reference for the debris-impact protection design of lithium-ion battery packs on spacecraft.

     

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