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  4. Influence of process parameters on the formability of bead stamping part using advanced models
 
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Influence of process parameters on the formability of bead stamping part using advanced models

Publikationstyp
Journal Article
Date Issued
2017-07
Sprache
English
Author(s)
Cha, Wan-Gi  
Müller, Sabrina  
Bursac, Nikola  
Albers, Albert  
Volk, Wolfram  
TORE-URI
http://hdl.handle.net/11420/13366
Journal
Journal of physics. Conference Series  
Volume
896
Start Page
012005
Citation
Journal of Physics: Conference Series 896: 012005 (2017)
Contribution to Conference
36th IDDRG Conference 2017  
Publisher DOI
10.1088/1742-6596/896/1/012005
Scopus ID
2-s2.0-85032438579
Publisher
IOP Publ.
Beads are applied to deep drawn sheet metal parts to increase its stiffness. In order to form the bead, a two-stage manufacturing process including at least deep drawing and beading is performed. Thus, reductions of sheet metal thickness and consequently weight reduction can be effectively reached by numeric optimization. In order to apply the optimization algorithm to the production of non-virtual actual parts, the forming limits of the parts must be considered in both manufacturing steps. Bead formability is affected by process parameters such as blank holding force and lubrication. One way to investigate these influences is to use an accurate simulation model. In this study, the yield function named Yld2000-2D under non-associated flow rule is used to express anisotropic material behavior of blank and the Generalized Forming Limit Concept (GFLC) considering nonlinear strain paths is used to determine the formability. These models are validated by comparing the strain and bead forming limits measured in the Nakajima experiment. Then, the influences of mentioned process parameters are investigated by the validated model.
DDC Class
600: Technik
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