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超声波法在电连接器接触压力测试中的应用
引用本文:骆燕燕,冯郁竹,郝良,刘昕昊,刘硕. 超声波法在电连接器接触压力测试中的应用[J]. 计量学报, 2018, 39(1): 72-76. DOI: 10.3969/j.issn.1000-1158.2018.01.16
作者姓名:骆燕燕  冯郁竹  郝良  刘昕昊  刘硕
作者单位:1.河北工业大学 电气工程学院 电磁场与电器可靠性省部共建重点实验室, 天津 300130
2.国家电网 北京市电力公司, 北京 100031
基金项目:国家自然科学基金(51107028);河北省高等学校创新团队领军人才培育计划(LJRC003)
摘    要:电连接器的可靠接触是通过接触件间稳定的接触压力实现的。利用超声波的传播特性,提出一种适应于接触件紧密插合结构特点的接触压力无损检测方法。设计了试验电路并进行了测试,分析了电连接器的接触压力规律。测试结果表明:不同型谱的电连接器接触压力值与接触件的结构参数相关,随插孔直径的减小,接触压力有所降低;但同一型谱的电连接器不同接触件的接触压力也存在一定的分散性。这种分散性可能成为导致接触失效的隐患之一。

关 键 词:计量学  电连接器  接触压力  超声波测量  检测技术  无损检测  
收稿时间:2016-11-14

Application of Ultrasonic Method in Contact Stress Testing of Electric Connector
LUO Yan-yan,FENG Yu-zhu,HAO Liang,LIU Xin-hao,LIU Shuo. Application of Ultrasonic Method in Contact Stress Testing of Electric Connector[J]. Acta Metrologica Sinica, 2018, 39(1): 72-76. DOI: 10.3969/j.issn.1000-1158.2018.01.16
Authors:LUO Yan-yan  FENG Yu-zhu  HAO Liang  LIU Xin-hao  LIU Shuo
Affiliation:1.Province Ministry Joint Key Laboratory of Electromagnetic Field and Electrical Apparatus Reliability,School of Electrical Engineering, Hebei University of Technology, Tianjin 300130, China 
2.State Grid (Company of China), Beijing Electric Power Company, Beijing 100031, China
Abstract:The reliable contact of the electric connector is achieved through the stable contact pressure between the contacts. Based on the transmission characteristics of ultrasonic wave, a nondestructive testing method for contact pressure is proposed, which is suitable for the contacts with closely inserting structure characteristic. The testing circuit is designed and tested. Analyzing the contact pressure of the electric connector. The test results show that the contact pressure of electrical connector in different types is related to the structure parameters of the contact, and with the decrease of the diameter of the hole, the contact pressure is reduced; but the contact pressure of the electrical connector of the same type also has a certain dispersion. This dispersion may be one of the potential dangers of contact failure.
Keywords:metrology  electric connector  contact pressure  ultrasonic measurement  detection technology  nondestructive testing  
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