Journal of Zhejiang University SCIENCE A
ISSN 1009-3095(Print), 1862-1775(Online), Monthly

2007   Vol. 8   No. 3   p. 506~510

On-line Access Date:   Mar. 12, 2007
[ Home Page ]   |   [ Full Text ]

Technical research on optimization design of contacts of electrical connector

LV Bin, ZHOU Sheng-jun, ZHAO Lan-yan

(Hangzhou Aerospace Electronic Technology Co., Ltd, Hangzhou 310015, China)
E-mail: apporol1106@yahoo.com.cn
Received Dec. 19, 2006 revision accepted Jan. 12, 2007

Abstract: Pin and socket contacts are the key parts of electrical connector as aerospace electronic components. The contacts are also the direct carriers for signal transmitting of electronic equipments, passing the signal from the input end to the output end of electrical connector. The reliability of pin and socket contacts directly influences signal transmission. The goal of this study is to enhance the contact reliability of aerospace electrical connector. Computer simulation analysis was made on contacts performance data by utilizing the simulation system developed by PCL Language of MSC software. Furthermore, the results were experimentally validated so as to realize the objective of optimizing contacts design.

Key words: Electrical connector, Contacts, Simulation, Optimization design
doi:10.1631/jzus.2007.A0506             CLC number: TM5

References:

[1] Chen, J., Deng, Q., Zhang, W.G., 2006. The Reasons and Correction for the Errors Occurred in Rigid Plasticity Finite Element Numerical Simulation. Http://cad.newmaker.com/disp_art/1310002/17081.html

[2] Diehl, T., 2005. How to address the hard issue of nonlinearity. Design News China, 2(3).

[3] Du, P.A., 2006. Basic Principles for Finite Element Grid Plotting. Http://cad.newmaker.com/disp_art/1310003/11921.html

[4] Ge, S., 2006. The Units in Finite Element Analysis. Http://cad.newmaker.com/disp_art/1310002/16069.html

[5] Guo, J.N., Hu, J.X., Lu, Z.D., 2006. Parallel Area Partition Method for Auto-generated Finite Element Grids. Http://cad.newmaker.com/disp_art/1310003/10006.html

[6] Ilxy, 2006. Nonlinear finite element analysis of concrete filled rectangular steel stubs. Simwe Electronics Periodical, 8:15-22.

[7] Jia, X.M., Dai, F., 2006. Three-dimensional static and dynamic stress intensity factor computations using ANSYS. Simwe Electronics Periodical, 1:5-16.

[8] Liang, X.H., 2006. Mobile phone structure collision simulation applying the finite element technique. Simwe Electronics Periodical, 8:23-27.

[9] MSC & SOFTWARE, 2003. Technical Report on MSC.Marc Software.

[10] Qiu, Z.D., Lin, C.Z., 2006. Finite Element Analysis Technology for Macro Structure in Engineering Mechanical Design. Http://cad.newmaker.com/disp_art/1310003/8534.html

[11] Wang, H., 2006. Elasticity and plasticity computations for discretional polygon configuration based on parametric variation principle. Simwe Electronics Periodical, 8:36-46.

[12] Zou, Z.G., 2006. Material performance unit in finite element analysis. Simwe Electronics Periodical, 1:1-4.