DocumentCode :
2006091
Title :
Experimental and Simulated Springback after Stamping of Copper-Based Spring Materials
Author :
Hattori, Yoshiyuki ; Furukawa, Kazuki ; Hamasaki, Hiroshi ; Yoshida, Fusahito
Author_Institution :
AutoNetworks Technol., Ltd., Suzuka, Japan
fYear :
2013
fDate :
22-25 Sept. 2013
Firstpage :
1
Lastpage :
6
Abstract :
The reliability of connector is depending on the contact force, generated by the spring in terminals of connectors. The springs are formed by stamping from a strip of spring material. Therefore, the prediction of its springback after stamping and force-displacement relation by the finite element (FE) simulation is important for the design of terminals. The mathematical model of stress-strain (s-s) responses of the materials is required for the simulation. When the materials are deformed in forward and the following reverse directions, almost all the spring materials show different s-s responses between the two directions, due to the Bauschinger effect. This phenomenon makes the simulation difficult because the s-s response depends on the prior deformation. The authors reported that s-s responses of copper-based spring materials under cyclic tension and compression deformations could be expressed accurately by the Yoshida-Uemori model, which is a constitutive model describing the Bauschinger effect. In this paper, experimental and simulated springback after stamping will be presented. The simulation results using Yoshida-Uemori model were good agreements with the experimental. The use of this model for the FE simulation would be recommended for the more accurate prediction of springback.
Keywords :
Bauschinger effect; copper; electric connectors; finite element analysis; reliability; stress-strain relations; Bauschinger effect; Cu; FE simulation; Yoshida-Uemori model; compression deformations; connector reliability; contact force; copper-based spring material stamping; cyclic tension; finite element simulation; force-displacement relation; mathematical model; reverse directions; s-s response; simulated springback; stress-strain response; Deformable models; Iron; Materials; Mathematical model; Predictive models; Springs; Strain;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Holm Conference on Electrical Contacts (HOLM) , 2013 IEEE 59th
Conference_Location :
Newport, RI
ISSN :
1062-6808
Print_ISBN :
978-1-4799-1556-9
Type :
conf
DOI :
10.1109/HOLM.2013.6651412
Filename :
6651412
Link To Document :
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