海洋大气环境对铝合金电连接器壳体腐蚀及电气性能影响
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Effects of Marine Atmospheric Environment on Corrosion and Electrical Performance of Aluminum Alloy Electrical Connector Shell
  • 作者:王玲 ; 赵全成 ; 杨万均
  • 英文作者:WANG Ling;ZHAO Quan-cheng;YANG Wan-jun;Natural Environmental Test and Research Center of Science, Southwest Technology and Engineering Research Institute;
  • 关键词:铝合金 ; 电连接器 ; 海洋环境 ; 腐蚀 ; 电气性能
  • 英文关键词:aluminum alloy;;electrical connectors;;marine environment;;corrosion;;electrical properties
  • 中文刊名:JSCX
  • 英文刊名:Equipment Environmental Engineering
  • 机构:西南技术工程研究所国防科技工业自然环境试验研究中心;
  • 出版日期:2019-05-25
  • 出版单位:装备环境工程
  • 年:2019
  • 期:v.16
  • 语种:中文;
  • 页:JSCX201905016
  • 页数:5
  • CN:05
  • ISSN:50-1170/X
  • 分类号:90-94
摘要
目的研究海洋大气环境对2A12和6061铝合金电连接器性能的影响。方法开展2A12和6061铝合金电连接器在海南万宁试验站4 a棚下暴露试验,通过宏微观形貌观察和电气性能测试对比分析两种铝合金电连接器壳体的腐蚀差异和电气性能变化。结果两种铝合金电连接器壳体均出现镀层鼓泡、剥落和基体腐蚀,6061铝合金电连接器壳体腐蚀程度高于2A12铝合金电连接器。2A12铝合金基体发生点蚀和晶间腐蚀,6061铝合金基体发生剥蚀,基体腐蚀产物堆积,导致镀镍层开裂剥落,进而失去防护作用。相对于导通性能、耐压强度,电连接器的绝缘电阻对海洋大气环境更为敏感。结论铝合金化学镀镍壳体电连接器在热带海洋大气环境下不适宜长期使用。
        Objective To study the effects of marine atmospheric environment on performance of 2A12 and 6061 aluminum alloy electrical connectors. Methods Atmospheric environment test of 2A12 and 6061 aluminum alloy electrical connectors were carried out in Wanning Test Station for 4 a. Corrosion difference and change of electrical properties of two kinds of aluminum alloy electrical connectors were analyzed by morphology observation and electrical performance test. Results Coating bubbling, spalling and matrix corrosion occurred in the shell of two kinds of aluminum alloy electrical connectors. The corrosion degree of 6061 aluminum alloy electrical connector shell was higher than that of 2A12 aluminum alloy. Pitting corrosion and intergranular corrosion occurred in 2A12 aluminum alloy base, and corrosion occurred in 6061 aluminum alloy base. The accumulation of corrosion products resulted in cracking and spalling of nickel plating layer. Compared with continuity and compression strength, the insulation resistance of electrical connectors was more sensitive to marine atmosphere environment. Conclusion Electrical connectors of electroless nickel-plated aluminum alloy shell are unsuitable for long-term use in tropical marine atmospheric environment.
引文
[1]林思达,潘骏,陈文华,等.电连接器可靠性研究述评[J].机电元件,2009,29(4):52-55.
    [2]王浩伟,徐廷学,周伟.综合退化数据与寿命数据的某型电连接器寿命预测方法[J].上海交通大学学报,2014,48(5):702-706.
    [3]潘骏,靳方建,陈文华,等.电连接器接触件结构分析与插拔试验[J].中国机械工程,2013,24(12):1636-1640.
    [4]杨奋为.军用电连接器的应用与发展[J].机电元件,2012(4):52-61.
    [5]CHEN Wen-hua,LIU Juan,GAO Liang,et al.Accelerated Degradation Reliability Modeling and Test Data Statistical of Aerospace Electrical Connector[J].Chinese Journal of Mechanical Engineering,2011,24(6):957-962.
    [6]潘骏,刘红杰,陈文华,等.基于步进加速退化试验的航天电连接器接触可靠性评估[J].中国机械工程,2011,22(10):1197-1200.
    [7]BELOUFA A.Numerical and Experimental Optimization of Mechanical Stress,Contact Temperature and Electrical Contact Resistance of Power Automotive Connector[J].International Journal of Mechanics,2010,4(4):94-104.
    [8]卢向军,吕宏峰.电连接器耐间接闪电可靠性研究[J].电子产品可靠性与环境试验,2017,35(4):14-18.
    [9]PENG C Y,TSENG S T.Statistical Lifetime Inference with Skew-Wiener Linear Degradation Models[J].IEEETransactions on Reliability,2013,62(2):338-350.
    [10]李劲风,郑子樵,任文达.第二相在铝合金局部腐蚀中的作用机制[J].材料导报,2005,19(2):81-83.
    [11]王玲,杨万均,张世艳,等.热带海洋大气环境下电连接器环境适应性分析[J].装备环境工程,2012,9(6):5-8
    [12]张先勇,舒德学,陈建琼.海南万宁试验站大气环境及腐蚀特征研究[J].装备环境工程,2005,12(4):77-79.
    [13]李家柱.大气环境及腐蚀性[J].装备环境工程,2005,2(2):58-61.