谭晓明,张丹峰,王德,钱昂,战贵盼.海洋环境下航空电连接器腐蚀行为规律研究[J].装备环境工程,2020,17(2):56-60. TAN Xiao-ming,ZHANG Dan-feng,WANG De,QIAN Ang,ZHAN Gui-pan.Corrosion Behavior of Aviation Electrical Connector in Marine Environment[J].Equipment Environmental Engineering,2020,17(2):56-60.
海洋环境下航空电连接器腐蚀行为规律研究
Corrosion Behavior of Aviation Electrical Connector in Marine Environment
投稿时间:2019-07-20  修订日期:2019-09-06
DOI:10.7643/issn.1672-9242.2020.02.009
中文关键词:  海洋环境  电连接器  加速腐蚀试验  接触电阻  绝缘电阻
英文关键词:marine environment  electrical connector  accelerated corrosion test  contact resistance  insulation resistance
基金项目:
作者单位
谭晓明 海军航空大学 青岛校区,山东 青岛 266041 
张丹峰 海军航空大学 青岛校区,山东 青岛 266041 
王德 海军航空大学 青岛校区,山东 青岛 266041 
钱昂 海军航空大学 青岛校区,山东 青岛 266041 
战贵盼 海军航空大学 青岛校区,山东 青岛 266041 
AuthorInstitution
TAN Xiao-ming Qingdao Branch of Navy Aeronautical University, Qingdao 266041, China 
ZHANG Dan-feng Qingdao Branch of Navy Aeronautical University, Qingdao 266041, China 
WANG De Qingdao Branch of Navy Aeronautical University, Qingdao 266041, China 
QIAN Ang Qingdao Branch of Navy Aeronautical University, Qingdao 266041, China 
ZHAN Gui-pan Qingdao Branch of Navy Aeronautical University, Qingdao 266041, China 
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中文摘要:
      目的 研究电子设备中电连接器的腐蚀问题。方法 以军用飞机典型电连接器为研究对象,在实验室条件下模拟军用飞机服役的海洋环境条件,开展加速腐蚀试验。得到电连接器宏观、微观腐蚀形貌,接触电阻和绝缘电阻的变化规律,分析加载电流和未加载电流对电连接器腐蚀行为的影响规律。结果 在腐蚀试验的前3个周期,绝缘电阻值在1500~0 MΩ之间剧烈变化,到第4个周期降到0 MΩ,完全丧失绝缘性能。结论 加载电流明显加重了电连接器的腐蚀程度,导致接触电阻快速增大,腐蚀明显劣化了电连接器的导电性能。
英文摘要:
      The paper aims to research the corrosion problems of electrical connector in electronic equipment. Taking typical electrical connectors of military aircraft as the research object, the accelerated corrosion test was carried out under laboratory conditions to simulate the marine environment conditions of military aircraft in service. The macroscopical and microscopic corrosion morphology, the change laws of contact resistance and insulation resistance of electrical connectors were obtained, and the effects of loaded current and unloaded current on corrosion behavior of electric connectors were analyzed. In the first three cycles of the corrosion test, the insulation resistance varied drastically between 1500-0 MΩ and dropped to 0MΩ by the fourth cycle, completely lost the insulation properties. The results show that the load current significantly aggravates the corrosion of the electrical connector; leading rapid increase of the contact resistance. The corrosion remarkably deteriorates the electrical conductivity of the electrical connector.
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