LI Cui-ling, DAI Peng-fei, YANG Qiang, ZHANG Meng-jun. Contact Performance Evaluation and Parameter Sensitivity Analysis for Aerospace Electrical Connector[J]. Journal of Northeastern University Natural Science, 2018, 39(1): 71-75.
[1]杨奋为.军用电连接器的应用及发展[J].机电元件,2007,27(3):42-49.(Yang Fen-wei.The application and development of military electric connector[J].Mechanical and Electronic Components,2007,27(3):42-49.) [2]潘骏,刘红杰,陈文华,等.基于步进加速退化实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.(Pan Jun,Liu Hong-jie,Chen Wen-hua,et al. Contact reliability assessment of aerospace electrical connector based on step-up-stress accelerated degradation testing[J].Chinese Journal of Mechanical Engineering,2011,22(10):1197-1200.) [3]Amine B.Numerical and experimental optimization of mechanical stress,contact temperature and electrical contact resistance of power automotive connector[J].International Journal of Mechanics and Materials in Design,2010,4(4):94-104. [4]Duan K,Zhu F,Li Y,et al.Contact resistance investigation of electrical connector with different shrink range[C] //The 15th International Conference on Electronic Packaging Technology.Chengdu,2014:1146-1149. [5]Li Y,Zhu F L,Duan K,et al.Analysis of insertion force of electric connector based on FEM[C] //The 21st International Symposium on Physical and Failure Analysis of Integrated Circuits.Singapore,2014:195-198. [6]Zhang F X,Flowers G T.Fretting corrosion in electric connectors,induced by axial vibration[C] //The 60th IEEE Holm Conference on Electrical Contacts.New Orleans,2014:1-8. [7]Yang H Y,Flowers G T.Fretting in electrical connectors induced by axial vibration[J].IEEE Transactions on Components,Packaging and Manufacturing Technology,2015,5(3):328-336. [8]Song J,Koch C,Wang L L.Nanoscale particles modified gold plating for electrical contacts[C] // International Conference on Electrical Contacts.Beijing,2012:331-337. [9]Liao C F,Liu S P,Liao K C.Applications of laser welding to electric connectors[C] // International Conference on Thermal,Mechanical and Multi-Physics Simulation and Experiments in Microelectronics and Microsystems.Ghent,2014:1-6. [10]Li P Y,Liu Q,Hui Y,et al.Analysis of contact performance of real machined surface based on finite element method[J].Tribology Online,2016,11(1): 61-68. [11]陈文华,李红石,连文志.航天电连接器环境综合应力加速寿命试验与统计分析[J].浙江大学学报(工学版),2006,40(2):348-351.(Chen Wen-hua,Li Hong-shi,Lian Wen-zhi.Accelerated life test and statistical analysis of aerospace electrical connectors under multiple environmental stresses[J].Journal of Zhejiang University(Engineering Science),2006,40(2):348-351.) [12]Laurvick T V,Coutu R A.Micro-contact performance and reliability under low frequency,low amplitude,alternating current (AC) test conditions[C]//The 61st IEEE Holm Conference on Electrical Contacts.San Diego,2015:222-226. [13]Fu R J,Chose S Y B,Jackson R L,et al.Vibration-induced changes in the contact resistance of high power electrical connectors for hybrid vehicles[J].Packaging and Manufacturing Technology,2012,2(6):185-193.(上接第54页) [4]杨玉先,向昌武,石国光,等.15CrMoG高压锅炉管在线热处理混晶的产生原因分析与工艺改进[J].钢管,2012,41(6):14-17.(Yang Yu-xian,Xiang Chang-wu,Shi Guo-guang,et al.Analysis of causes for mischcrystal of 15CrMoG high-pressure boiler steel tube as occurring during on-line normalization process and relevant process improvement measures[J].Steel Pipe,2012,41(6):14-17.) [5]Davinci M A,Samantaray D,Borah U,et al.Characterization of hot workability of boron-added modified 9Cr-1Mo steel(P91B) using dynamic materials model [J].Materials Science Forum,2015,830/831:325-328. [6]赵勇桃.超超临界锅炉用P92钢的组织性能及应用[M].北京:冶金工业出版社,2015:152-154.(Zhao Yong-tao.Structure properties and applications of P92 steel for boiler of USC power plants [M].Beijing:Metallurgical Industry Press,2015:152-154.) [7]束国刚,刘江南,石崇哲,等.超临界锅炉用T/P91钢的组织性能与工程应用[M].西安:陕西科学技术出版社,2006:131-132,155-157.(Shu Guo-gang,Liu Jiang-nan,Shi Chong-zhe,et al.Structure properties and engineering applications of T/P91 steel for boiler of SC power plants [M].Xi’an:Shaanxi Science and Technology Press,2006:131-132,155-157.) [8]Jones R D.Developing coiled-tubing techniques on the Karachaganak field, Kazakhstan [R]. Houston:Society of Petroleum Engineers,2001. [9]Ning B Q,Shi Q Z,Yan Z S,et al.Variation of martensite phase transformation mechanism in minor-stressed T91 ferritic steel [J].Journal of Nuclear Materials,2009,339(1):54-60. [10]Tsuji N,Maki T.Enhanced structural refinement by combining phase transformation and plastic deformation in steels[J].Scripta Materialia,2009,60(12):1044-1049. [11]Lin Y C,Chen M S,Zhong J.Prediction of 42CrMo steel flow stress at high temperature and strain rate[J].Mechanics Research Communications,2008,35 (3):142-150.