Please wait a minute...
Chinese Journal of Engineering Design  2015, Vol. 22 Issue (3): 290-294    DOI: 10.3785/j.issn. 1006-754X.2015.03.014
    
Study on insertion-extraction force of the brush electrical contact
LIANG Yun-zhong1, QIAO Yu-peng1,JIN Bo2 ,WU Quan1,XU Wei-ping1
1.Department of Mechanical and Electrical Engineering, Guizhou Normal University, Guiyang 550001, China;
2.Guizhou Honglin Machinery Co., Ltd., Aviation Industry of China, Guiyang 550001, China
Download: HTML     PDF(1378KB)
Export: BibTeX | EndNote (RIS)      

Abstract  In order to solve the current problem which is the lack of insertion-extraction force control method for brush electrical contact, the method based on the insertion depth was put forward. The structural mechanics model and the finite element model in the insertion-extraction process of the brush electrical contact were constructed, and the insertion force test on the brush electrical contact was done. The comparative analyses of curves of the insertion-extraction force varying with the insertion depth of the structural mechanics analysis model, the finite element model and test data were performed. The influences of random inserting and other factors on the structural mechanics model were assessed, the insertion-extraction force in different insertion depth of the brush electrical contact and the spring wire socket electrical contact and twist-pin electrical contact were carried out. The results showed that the insertion force of brush electrical contact and the insertion depth followed the power function relationship. When the insertion depth was in the range of 1.8-2.4 mm, the typical brush electrical contact insertion-extraction force was significantly smaller than the same specifications spring wire socket and twist-pin electrical contact. The method of controlling insertion-extraction force based on the insertion depth can provide a certain reference on the series expansion and parameter design of brush electric contact.

Key wordsbrush electric contact      insertion-extraction force      structural mechanics analysis model      finite element model      insertion-extraction depth      connector     
Received: 03 November 2014      Published: 28 June 2015
Cite this article:

LIANG Yun-zhong,QIAO Yu-peng,JIN Bo ,WU Quan,XU Wei-ping. Study on insertion-extraction force of the brush electrical contact. Chinese Journal of Engineering Design, 2015, 22(3): 290-294.

URL:

https://www.zjujournals.com/gcsjxb/10.3785/j.issn. 1006-754X.2015.03.014     OR     https://www.zjujournals.com/gcsjxb/Y2015/V22/I3/290


毛刷电接触对的插拔力研究

针对现有毛刷电接触对插拔力控制方法的缺乏,提出了基于插拔深度控制毛刷电接触对插拔力的方法,在插拔过程中建立毛刷电接触对的结构力学模型和有限元仿真模型,并对毛刷电接触对进行插入力试验.将结构力学模型、有限元仿真模型、插拔力试验所得的插入力随插入深度变化曲线进行对比分析,评估了随机插合等因素对结构力学模型的影响,进行了线簧孔、麻花针和毛刷电接触对在不同插拔深度的插拔力对比试验.结果表明,毛刷电接触对插入力大小与插拔深度成幂函数关系,当典型毛刷电接触对插拔深度为1.8~2.4 mm时,插拔力明显较同规格线簧孔、麻花针电接触对的小.基于插拔深度控制插拔力的方法为毛刷电接触对系列化扩展及参数设计提供了一定的参考.

关键词: 毛刷电接触,  插拔力,  结构力学模型,  有限元模型,  插拔深度,  连接器 
[1] LUO Yan-yan, PAN Xiao-song, MA Xuan, WU Xiong-wei. Research on application of infrared thermal imaging technology in plug-in wear detection of electrical connector[J]. Chinese Journal of Engineering Design, 2021, 28(5): 615-624.
[2] LI Rui, LI Wen-qiang, QI Xiao-hua, WANG Meng, SONG Yue-gang, LIU Yang. Automatic extraction and realization of text information for multiple CAD drawings[J]. Chinese Journal of Engineering Design, 2021, 28(2): 148-154.
[3] ZENG Qi, BIN Guang-fu, LI Chao, CHEN Li-feng. Study on the influence of torsional stiffness of coupling on torsional vibration characteristics of slender series shafting of submersible oil electric pump[J]. Chinese Journal of Engineering Design, 2021, 28(1): 89-94.
[4] LUO Yan-yan, WU Xiong-wei, TIAN Ya-chao, YU Chang-chao. Study on the contact performance of electric connector under impact environment[J]. Chinese Journal of Engineering Design, 2018, 25(1): 110-117.
[5] LUO Yan-yan, YANG Jing-yu, REN Yong-long, ZHANG Yuan-lei, LI Wen-jun. Simulation and experimental study on plug and pull characteristic of electrical connector contact[J]. Chinese Journal of Engineering Design, 2017, 24(2): 168-173,195.
[6] LUO Yan-yan, YANG Jing-yu, LIU Xin-wei, LI Xiao-ning. Numerical analysis and experimental verification on stress field of electrical connector contact[J]. Chinese Journal of Engineering Design, 2016, 23(6): 564-570.
[7] LIANG Yun-zhong, JIN bo, QIAO Yu-peng. Structure improved design of the brush electrical contact based on guiding inserting[J]. Chinese Journal of Engineering Design, 2016, 23(3): 212-216.
[8] LI Wei, LEI Hong-xiang, LI Zong-qi, LI Bin, YUAN Sheng-tong. Design and research of high pressure sealing connector[J]. Chinese Journal of Engineering Design, 2016, 23(3): 295-300.
[9] XU Cheng-bin,PAN Jun,CHEN Wen-hua,HE Qing-chuan,ZHANG Li-bin,LIANG Jun. Finite element thermal analysis and plugging test of the high temperature electrical connector[J]. Chinese Journal of Engineering Design, 2015, 22(3): 250-255.
[10] CHEN Ji-Gang, ZHANG Guo-Zhi, LIN Yu-Fei. Finite element model of bending fatigue test of aluminum-alloy wheel[J]. Chinese Journal of Engineering Design, 2011, 18(2): 120-123.
[11] LIN Rui-Jin, CHEN Wen-Hua, LIU Juan, GAO Liang, PAN Jun. Research on feasibility of accelerated degradation test for aerospace electrical connector[J]. Chinese Journal of Engineering Design, 2010, 17(4): 317-320.
[12] GUO Jia-Min, YUAN Xing-Fei, DONG Shi-Lin, ZHAO Xiao-Xu. Modification of calculation model of suspendome based on measured data[J]. Chinese Journal of Engineering Design, 2009, 16(4): 297-302.
[13] LUO Ming-jun,WANG Wen-lin. Finite element analysis and correlative structural optimization on framework of double-wishbone independent suspension with twin torsion bar[J]. Chinese Journal of Engineering Design, 2009, 16(2): 108-111.