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安全型憎水剂对飞机金属连接结构腐蚀行为的影响研究

张蕾 邢朝君 崔常京 王逾涯 张康 刘慧丛 朱立群

航空工程进展2026,Vol.17Issue(2):48-55,8.
航空工程进展2026,Vol.17Issue(2):48-55,8.DOI:10.16615/j.cnki.1674-8190.2026.02.05

安全型憎水剂对飞机金属连接结构腐蚀行为的影响研究

The effect of safety hydrophobic agents on the corrosion behavior of metal joint structure in aircraft

张蕾 1邢朝君 1崔常京 1王逾涯 1张康 1刘慧丛 2朱立群2

作者信息

  • 1. 北京航空工程技术研究中心 第三研究室,北京 100076
  • 2. 北京航空航天大学 材料科学与工程学院,北京 100191
  • 折叠

摘要

Abstract

Aircraft is inevitably subjected to environmental corrosion during service.By forming a moisture barrier,hydrophobic coatings significantly control the local corrosive environment,thereby improving the corrosion resis-tance of localized aircraft surfaces,it contributes significantly to flight safety assurance and service life extension of aircraft.The traditional hydrophobic agent has the drawback of being flammable due to the mixture of gasoline.Therefore,a safe hydrophobic agent is prepared in this paper by selecting non-flammable solvents and performing orthogonal experiments for the components.The preferred component ratio is determined through contact angle measurements.Subsequently,the basic properties of the safety hydrophobic agent are investigated.And compre-hensive environmental corrosion tests of typical metal joint structures of aircraft are carried out to investigate the ef-fect of safety hydrophobic agents on the corrosion behavior of connection structures.The performance testing and morphology analysis results indicate that,the prepared hydrophobic agent has the characteristics of transparency and non-flammability,and shows good compatibility with aviation coatings.And the corrosion resistance of the structures is significantly improved after hydrophobic treatment.Compared to pre-assembly treatment,post-assembly hydrophobic treatment more effectively suppresses the occurrence of structural corrosion.

关键词

安全型憎水剂/憎水性/腐蚀/连接结构/装配

Key words

safety hydrophobic agents/hydrophobicity/corrosion/joint structures/assembly

分类

航空航天

引用本文复制引用

张蕾,邢朝君,崔常京,王逾涯,张康,刘慧丛,朱立群..安全型憎水剂对飞机金属连接结构腐蚀行为的影响研究[J].航空工程进展,2026,17(2):48-55,8.

基金项目

国家重点研发项目(2023YFB3408200) (2023YFB3408200)

航空工程进展

1674-8190

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